Forest Protection Resources & News | New England Forestry Timber Company https://www.neforestrydistribution.com/stories/tag/forest-protection/ Stories about Sustainable Forestry, the Role of Land Resources in Our Lives, and the People Behind New England Forestry Mon, 02 Dec 2024 16:28:47 +0000 en-US hourly 1 https://wordpress.org/?v=6.1.5 Forest Protection post_tag Climate Smart Forestry: Is Forest Management a Climate and Carbon Solution? https://www.neforestrydistribution.com/stories/is-forest-management-a-climate-and-carbon-solution/ https://www.neforestrydistribution.com/stories/is-forest-management-a-climate-and-carbon-solution/#respond Mon, 23 Oct 2023 18:18:28 +0000 https://www.neforestrydistribution.com/stories/?p=3987 Climate smart forestry practices amplify the protective role the forest plays in the environment, providing a natural solution to combat climate change. Learn what climate smart forestry is about and see some of the climate smart strategies New England Forestry is implementing across its ownership. New England Forestry has been in the sustainable forestry business for almost 100 years—that’s...

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Climate smart forestry practices amplify the protective role the forest plays in the environment, providing a natural solution to combat climate change. Learn what climate smart forestry is about and see some of the climate smart strategies New England Forestry is implementing across its ownership.

New England Forestry has been in the sustainable forestry business for almost 100 years—that’s a lot of time that our foresters, scientists and business leaders have been working with the land, monitoring the weather and managing the planting and harvesting of trees.

We’ve witnessed a lot of changes in the past century, not least of which has been the shifts in our global climate.

We know that the Earth’s surface temperature is changing, influenced by greenhouse gas emissions caused by human activity, and we know this will have an impact on regional and global weather patterns.

Knowing that climate change will continue to impact our world, we have to be more informed than ever.

Forest in foreground, snow-topped mountain in background
New England Forestry’s Swift Tree Farm grows against the backdrop of Mt. St Helens.

Protecting Our Forests for the Future in a Changing Climate

When we see the forecast for heavy rainfall or drought or see yet another headline of record-breaking temperatures, we are looking through the eyes of a land manager.

We think: are we prepared? What can we do to make our forests more resilient if these trends continue?

As forest managers, we believe that we can adapt to these changes to ensure that our company—and our forests—will thrive in the next 100 years.

Our in-house scientists and foresters have looked at data from organizations like the Intergovernmental Panel on Climate Change (IPCC) to help us define climate smart forestry practices.

In this article, we will explore the concept of climate smart forestry and the strategies we will use to protect the long-term health of our forests given the climactic conditions that will exist in the future.

Forester in hydraulic lift with bags over treetops in a Georgia seed orchard
Climate smart forestry begins in our Georgia seed orchard with breeding the native tree families that stand up best to droughts, flooding and other extreme weather events. Learn more in our video story, How Foresters Use Controlled Pollination to Improve Tree Performance.

What is Climate Smart Forestry?

Climate smart forestry refers to the sustainable management of forests with a focus on mitigating, reducing and adapting to the impacts of climate change. 

Using a climate smart forestry approach allows us to implement strategies that increase forest resilience and productivity, enhance carbon sequestration, and ensure the health of forest ecosystems.

In many cases, climate smart forestry practices will enhance our forests’ ability to capture (or “sequester”) and store carbon, a critical part of addressing global climate change.

Climate smart forestry practices also employ techniques to prevent the loss of carbon sinks, such as wildfire prevention techniques.

Climate Smart Forestry Principles to Guide New England Forestry’s Decision-making

Our in-house teams have defined four key principles to help us grow healthy, productive forests in the coming decades:

Here are a few examples of how we are putting these Climate Smart Forestry principles into action:

Flexible Planning: Using modeling to plan for changes

In a rapidly changing climate, it will be important that we stay flexible in our planning.

Our foresters already use modeling, a forecasting tool to predict our trees’ growth over time. We use these models in many areas of our planning, including our harvest schedules.

By incorporating climate change data into our calculations, we can update these models as new information is available. This will help us respond to the needs of our forests and support healthy tree growth.

Sustainable Forest Management: Considering climate data when making planting decisions

As part of sustainable forest management, in the U.S. we already use our in-house genetic research team’s findings to select the best native tree families and species to plant on a particular forest site.

Going forward, we also will look at climate data to make sure we’re planting what’s best suited to the changes expected in that location.

For example, if an area will see droughts over the long term, we will plant drought-resistant trees there, and our research scientists will guide us in making these decisions.

People wearing bags full of baby trees and carrying shovels, planting them in the forest
A planting crew plants Douglas-firs in western Washington. Learn more about how we develop custom plans for each planting operation in our video story, New England Forestry Foresters Plant Millions of Trees Every Year.

Strategic portfolio management: Considering climate change impact in new timberland acquisitions

While climate change is a global phenomenon, its effects are likely to be felt more in some regions of the world than others.

Fortunately, New England Forestry forests are located in regions expected to be less impacted by climate change. Temperature variations predicted for the U.S. South, U.S. Pacific Northwest and New Zealand, where we’re located, are less extreme than variations predicted in other parts of the world, such as much of Europe, as reported here by the IPCC.

We will employ strategic portfolio management when considering new timberland acquisitions—looking at the likely impact of climate change in a region before deciding to expand there.

Environmental contribution: Continually improving our own impact to reduce emissions even further

We know that to reduce carbon in the atmosphere, we must enhance our environmental contribution by reducing New England Forestry’s carbon footprint.

Because our forests capture carbon as part of the growing process and store it in trees, we are already carbon negative. That is, we emit less carbon than we store. But we also plan to reduce our emissions as new technology is developed.

What is Carbon Capture and Storage in Sustainable Forest Management?

Forests act as natural carbon sinks, absorbing atmospheric carbon dioxide through photosynthesis and storing it in trees, soils, and other organic matter. This process is known as carbon capture and storage (CCS) in forestry.

Climate smart forestry emphasizes the importance of sustainable practices that maximize the carbon capture and storage potential of our working forests.

The Role of Working Forests in Carbon Capture

Working forests are critical to this mission because of their ability to capture and store carbon from the atmosphere.

As forests grow, they capture carbon via photosynthesis and store that carbon. Forests planted for timber are managed to grow quickly, maximizing their photosynthesis and thus their carbon capture.

Once they have matured and the growing process slows, they’re harvested—and the carbon remains stored in the products they become, such as lumber and furniture.

At the same time, the land where they grew is replanted with the next generation of trees, starting the fast-growing trees’ carbon capture process all over again. 

Today, forests capture about 24 percent of the carbon emitted each year in the U.S. and about three-fourths of that carbon is sequestered by working forests, as shown in this report by NCASI.

Freshly cut logs in the forest that continue to store carbon
Carbon is not only stored in standing trees, but also continues to be stored in the products they become.

Climate Smart Forestry Beyond Carbon Capture

Beyond the capture of carbon, climate smart forestry aims to reduce the loss of carbon.

For example, in the case of drought and wildfire, the best forest management plan is to reduce the number of trees. This allows the remaining trees to be more hydrated and reduces the amount of dry fuel on the ground.

These practices drastically reduce the likelihood of loss from a natural disturbance caused or intensified by climate change.

Working forests also play a role in providing the wood fiber needed for other efforts to reduce carbon emissions. Nature Based Solutions, a collective term for natural features and processes used to tackle socio-environmental issues, will generate increasing demands for timber.

For example, Sustainable Aviation Fuel, made from renewable biomass, has the potential to replace petroleum-based jet fuel with a fraction of the carbon emissions.  

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The Importance of Climate Smart Forestry

To curb the worst effects of climate change, the U.S. needs to reach its goal of net zero emissions by 2050. This means that, as a nation, we need to emit less carbon than we capture and store.

Climate smart forestry is an important tool in the global quest to address climate change.

One tangible example: the recent increase in catastrophic wildfires has weakened forests and limited their ability to sequester carbon. As part of our climate smart forestry plan, our foresters will use firebreaks, thinning, and understory vegetation control to limit wildfire threats.

When we implement these and other climate smart forestry practices, we will maximize our forests’ capacity to capture and store carbon from the atmosphere, contributing to the goal of reaching net zero emissions by 2050.

Tall trees in buffer zones of an otherwise young forest as part of a climate smart forestry strategy
Buffer zones of taller trees help protect water quality on a mountainside in one of New England Forestry’s Washington forests.

Benefits of Climate Smart Forestry Practices

Implementing climate smart forestry practices brings numerous benefits, including:

  • Climate Change Mitigation: By capturing and storing carbon dioxide, our working forests contribute to mitigating climate change, helping to reduce the concentration of greenhouse gases in the atmosphere.
  • Biodiversity Conservation: Sustainable forest management practices promote biodiversity conservation by preserving and enhancing the habitats of various plant and animal species. Learn more about the importance of forest biodiversity.
  • Ecosystem Services: Forests provide a range of valuable ecosystem services, such as clean air and water, soil conservation and recreational opportunities. By practicing climate smart forestry, we ensure the preservation of these essential services for present and future generations.
  • Sustainable Livelihoods: New England Forestry’s commitment to climate smart forestry creates sustainable livelihoods for local communities. By managing our forests responsibly, we support jobs in the timber industry while protecting the environment.

Resilient Forests Will Help Us Adapt to Climate Change

As forest managers, we believe in the resilience and adaptability of our forests and we know the value of working with—rather than against—nature.

As we learn more about the coming changes in regional and global weather patterns, we will do our part to prepare our forests and keep them healthy and productive over the long term.

To learn more about our climate smart forestry plans and how we are continually adapting as new science emerges, you can view New England Forestry’s in-depth Climate Change report here.

Callout to view New England Forestry's latest sustainability, carbon and climate reports.

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How Forestry Companies Prove They’re Sustainable https://www.neforestrydistribution.com/stories/how-forestry-companies-prove-theyre-sustainable/ https://www.neforestrydistribution.com/stories/how-forestry-companies-prove-theyre-sustainable/#respond Fri, 07 Jul 2023 12:41:16 +0000 https://www.neforestrydistribution.com/stories/?p=3712 Get a rare, behind-the-scenes look at a sustainable forestry certification audit with third-party auditor Richard Boitnott, who has been doing Sustainable Forestry Initiative® audits for 22 years. LAKE CITY, Florida—When asked whether sustainable forestry certification makes a difference, Richard Boitnott can recall more than 20 years of providing feedback through audits that resulted in companies...

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Get a rare, behind-the-scenes look at a sustainable forestry certification audit with third-party auditor Richard Boitnott, who has been doing Sustainable Forestry Initiative® audits for 22 years.

LAKE CITY, Florida—When asked whether sustainable forestry certification makes a difference, Richard Boitnott can recall more than 20 years of providing feedback through audits that resulted in companies throughout the U.S. better-demonstrating their sustainability.

As a third-party auditor with Bureau Veritas, Richard Boitnott determines whether forestry companies are meeting the requirements of the Sustainable Forestry Initiative® (or SFI). He has scrutinized hundreds of forests.

On rare occasions, there are perfect audits. More often, they are excellent, but there are opportunities to improve—and that’s what certified companies are looking for. Rather than reaching one level of sustainability and staying there forever, certified companies want to continuously improve and strengthen their efforts to protect and sustain the forest ecosystem.

“Those are really the best audits: the ones where you have a finding that you know you’re helping them improve their system, and they recognize it, and they recognize the fact that you helped them improve their system,” Richard says.

There are also times when a company seeking sustainable forest certification may need a lot of guidance before they are initially certified. Richard takes pride in the impact that kind of guidance can have on the way the land is managed.

“If there was not forest certification, a lot of land would be managed without that push to reach higher sustainability standards,” says Richard, who has been an auditor for 22 years. “Forest certification is what forces a change.”

In this article, we will explore various aspects of sustainable forestry certifications, including the certification process, objectives, audits, and the importance of continually raising the bar for environmental and social sustainability in the forestry industry.

SFI auditor Richard Boitnott leaning on a truck and talking to New England Forestry Forester
Richard Boitnott, left, has been a third party SFI auditor for 22 years.

What is a sustainable forestry certification?

Sustainable forestry certifications such as SFI, the Forest Stewardship Council (FSC) and the Programme for the Endorsement of Forest Certification (PEFC) are standards used to ensure the highest environmental standards in the forestry industry.

There are standards that address forest management all the way from preparing the land for planting to the way the trees are harvested. There are also standards for mills that process logs and the companies that make forest products you buy in the store. You can look for sustainable forestry certification labels when you buy forest products such as wooden, paper, and cardboard items to ensure they come from a sustainably-managed source.

In forest management, the standards ensure the entire forest ecosystem will thrive.

The SFI guidelines verify that forest owners are only harvesting a small percentage of their overall land base. With well over 90 percent of the company’s forests in some stage of growth, this practice ensures a continuous wood supply as well as a plentiful array of forest ecosystems in different stages of the forest life cycle. The standards also enforce methods to protect waterways from sedimentation and chemicals.

Aerial of forest showing a variety of tree ages and protected wetlands and waterways.
Sustainable forests like New England Forestry’s Crandall forest, above, should have a variety of tree ages as well as protected wetlands and waterways. A well-managed forest will look like a mosaic from above, as this one does.

Protecting vulnerable habitats

Forest certification standards also ensure that the habitats of vulnerable species are carefully protected. For example, foresters set up and protect a large boundary area around bald eagles’ nests as long as the nest exists. To learn more about that, watch our video, How Foresters Protect Bald Eagles.

There are also species you may have never even heard of that foresters are trained to recognize and protect. In the Red Hills region of Alabama, New England Forestry foresters protect the extremely rare Red Hills Salamander, which was only discovered in the 1960s. You can learn more about this unique creature and the work we do to protect it in our video story, Foresters Protect Rare Salamander Found Only in Alabama.

Standards evolve

Newer standards under SFI are aimed at climate smart forestry, which are forest practices that will help prepare forests to better withstand future changes in climate; fire resilience and awareness, which ensures the use of practices to protect forests from wildfire and educating the public about it; social measures, such as having a diversity, equity and inclusion policy; and collaboration with indigenous peoples.

For companies like ours, we were implementing best practices long before we became certified, but the certification proves from an outside perspective that we are sustainably managing our forests. New England Forestry has been certified by the SFI standard in the U.S. since 2001 and the FSC and PEFC standards in New Zealand since 2004.

Bald eagle sitting in its nest in a tall tree in a Florida Forest
A bald eagle awaits hatching time in a New England Forestry forest in Levy County, Florida.

What are the SFI sustainable forestry certification objectives?

SFI has more than 40 performance measures and 130 sustainable forestry indicators in the forest management certification standard, which are categorized under the 17 objectives below:

  1. Forest management planning
  2. Forest health and productivity
  3. Protection and maintenance of water resources
  4. Conservation of biological diversity
  5. Management of visual quality and recreational benefits
  6. Protection of special sites
  7. Efficient use of fiber resources
  8. Recognize and respect Indigenous Peoples’ rights
  9. Climate smart forestry
  10. Fire resilience and awareness
  11. Legal and regulatory compliance
  12. Forestry research, science and technology
  13. Training and education
  14. Community involvement and landowner outreach
  15. Public land management responsibilities
  16. Communications and public reporting
  17. Management review and continual improvement

To view the entire SFI standard, visit forests.org/standards.

How do timber companies become certified for sustainable forestry?

If a company wants to be certified for sustainable forestry, it must apply to the certification body, pay an annual fee based on acres managed and net sales and show that it meets certain requirements.

Once the application is accepted, the company must incorporate all of the certification body’s standards into the way it does business.

Once the standards are implemented, the company will then undergo third party audits of its documents and forests to ensure it measures up to the standards.

When the company is officially certified, the external audit reviews will continue annually.

The goal of each audit is to verify that the company is doing a good job protecting its forests, but it is also a way to uncover ways to do even better. Every certified company is looking to constantly improve and fine-tune its practices to ensure it is doing the best it can possibly do with its forests.

Companies also conduct internal audits more frequently. Additionally, many state forest divisions periodically audit the companies’ forests for Best Management Practices (BMPs) compliance. BMPs are guidelines established by the state to ensure waterways are protected. Reports from each of these audits are also a part of the annual third party audit.

What happens when a sustainable forestry certification entity audits a forest owner?

During a sustainable forestry certification audit, there are two segments: auditing documents and auditing forests.

What happens during the document portion of an SFI forest audit?

On a recent annual audit at New England Forestry’s Headquarters in Wildlight, Florida, Richard spent the entire day in a conference room reviewing about 500 documents with New England Forestry employees. He screened the documents for compliance with more than 130 different SFI indicators.

The requirements include everything from the technical way forests are planted, managed and harvested to social standards such as indigenous relations and DEI policies. The employees were expected to be able to quickly locate the documents and expound on any details Richard asked about.

SFI auditor Richard Boitnott in a conference room asking questions to New England Forestry employees.
More than 500 documents are available to review in the document portion of an SFI audit. In the photo above, Richard asks a conference room full of New England Forestry employees questions about their documents and processes.

What happens during the field portion of an SFI forest audit?

The second portion of the audit included several days in the forest. Each day, Richard would select specific sites he wanted to see in person. An auditor often examines documents to find an example of something that didn’t go as planned, such as a weather event or a miscommunication with a contractor.

The auditor will then go to the location to observe what happened and question the responsible foresters about the decisions made relating to that incident. The auditor will also ask general questions to test the expertise of the forester.

During the 2023 New England Forestry audit, Richard went into a Lake City, Florida, forest with several New England Forestry foresters. He quizzed them about what they would do to protect an eagle’s nest if they were to find one. He asked them about soil types and their methodology for choosing which tree species to plant on each plot. He checked to see if an herbicide aerial application had ceased where the forester had designated.

SFI auditor Richard Boitnott talking to a group of New England Forestry employees during a field audit near Lake City, Florida.
Richard talks to a group of New England Forestry employees during a field audit near Lake City, Florida.

Protecting properties of special importance

The SFI standard also calls for forestry companies to protect properties with special importance. Forester Joe Geisel, a Resource Land Manager at New England Forestry, explained that one location within that forest had been the site of a tragic accident. Two wildland firefighters had been killed while battling the Blue Ribbon Wildfire of 2011.

Joe showed the auditor two memorials that had been established honoring the men where they had passed. He maintains the site in their honor. The memorial is included in an annual staff ride in which the Florida Forest Service honors the memory of the firefighters and teaches staff what can be learned from the accident. You can learn more about the staff ride in this article by the National Wildfire Coordinating Group.

A memorial site in a for two wildland firefighters who died fighting the Blue Ribbon wildfire in this forest in 2011.
Two memorials honor the memory of Joshua Burch and Brett Fulton, who died fighting the Blue Ribbon wildfire in this forest in 2011.

Foresters also protect sites believed to have historical significance, sites where there is habitat for threatened or endangered species, special trees, water features, cemeteries and other geologically or culturally important sites.

An example of a protected site on New England Forestry land is Brooks Sink, Florida’s largest sinkhole. New England Forestry partnered with the Suwannee River Water Management District to divert more water into the sinkhole, which replenishes the Floridan aquifer. Read more about the project and watch a video in our article, Working Forests Protect Water Quality Across the U.S.

Research is a component of good forest management

The SFI forest management standard also requires certified organizations to be active in research efforts. At New England Forestry, we have an in-house research team and also participate in cooperative research with other forestry organizations and universities.

One recent cooperative effort between New England Forestry, the University of Florida and the Suwannee River Water Management District is seeking ways to improve water flow in streams by changing how we manage the forest. New England Forestry is also working internally and with partners to delve deeper into ways forest managers can identify climate risks and mitigation efforts, which aligns with SFI’s 2022 additions to the Forest Management Standard.

You can learn more about some of the work our research team does in our video and article, New England Forestry Scientists Bring Deep Knowledge to Forest Management.

Tree Improvement Forester operating a hydraulic lifts to use controlled pollination techniques in a New England Forestry seed orchard
New England Forestry Senior Tree Improvement Forester Serenia O’Berry uses controlled pollination techniques to conduct research in a New England Forestry seed orchard.

What happens when a sustainable forestry certification audit identifies something that went wrong?

While every company hopes to perform well in an audit, there is usually room for improvement because the audits are intentionally rigorous.

“All you want is honest feedback,” says Ben Cazell, New England Forestry’s Senior Manager of Sustainable Forestry. “Folks have a passion and self-ownership of the ground they manage and make decisions on. They want to ensure that they’re doing things correctly. So, perfection, it’s not always going to happen. It’s nice to hear, ‘Good job. Well done.’ But it’s also good to hear, ‘You could do a little better in this aspect of one thing or another.’”

For example, SFI has new standards around climate smart forestry that have helped companies develop new ways to address and anticipate climate change.

When something is seriously out of alignment with the SFI standards, an auditor deems it to be either a minor or major “nonconformance.”

“A minor nonconformance means the system is bent. A major nonconformance means the system is broken,” Richard explains. “Now, most people have been in this business long enough where they don’t get majors. They know what to do to avoid a major. A minor is more common.”

The difference between a minor and major nonconformance in an SFI audit

An example of a minor nonconformance might be one mishap in which sediment went into a stream, Richard explains. A major nonconformance would be 3 or more instances of sediment seeping into waterways.

There is also a milder level of feedback called an ”opportunity for improvement.” Richard explains:

“Not everything we do in this business is black and white. There are lots of shades of gray. And I only call something if it’s clearly a nonconformance. If it’s not, and I think, ‘Well, you ought to pay attention to this,’ that’s an opportunity for improvement.”

Richard says, for him, the best audits are when his findings bring about a positive change in a company.

“When I get to the end and they tell me, ‘You’re right. We could’ve done that a little bit better. We will do better.’ I like to hear that, because that means they accepted it, they agreed with what I found, and they’re going to work to get better. Those are really the best audits.”

Aerial of a stream crossing in a New England Forestry forest
Stream crossings like this one on New England Forestry land are especially a focus during audits, as waterways must be carefully protected from sedimentation and herbicides. (In this photo, hardwood trees line the waterway during their winter leaf-off state. This Oklahoma waterway is an important habitat for the threatened, federally-listed leopard darter fish).

What happens when a company does exceptionally well, reaching far beyond the minimum SFI standard?

On rare occasions, a company will receive recognition for a practice that goes well beyond the SFI standard and sets an example for peers to follow.

This recognition, called a “notable practice,” is a special honor to those who receive it.

Ben recalls one example in which New England Forestry was recognized for using winch-assisted logging on steep slopes in the Pacific Northwest. The winch machine anchors into the ground on a stable, flat landing area and using a powerful cable to support heavy equipment on the steep ground below. The machinery improves safety for the logging crew. It also decreases the impact on the environment, often replacing the need to build a road on the slope.

The notable practice we received was for the reduction of road construction by using this newer technology. You can read more about winch-assisted logging and watch our video of a winch assist machine in action here.

Aerial of a harvest on steep terrain using a winch assist machine
A winch assist machine anchors into stable, flat ground (such as the landing at the top of this logging operation) and supports a machine such as a feller buncher with a strong cable, enabling it to navigate steep terrain.

How to know if a company is certified for sustainable forestry

Forestry companies share their sustainability certification information on their websites and often in their reports and investor documents.

You can also verify their membership on the website of the certification body, itself. For example, SFI has a database of its member companies at sfidatabase.org, PEFC has a database at pefc.org/find-certified and FSC has a database at search.fsc.org/en/. Each website publicly posts members’ third-party audit reports.

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How Foresters Restore Salmon Habitat in the Pacific Northwest https://www.neforestrydistribution.com/stories/how-foresters-restore-salmon-habitat-in-the-pacific-northwest/ https://www.neforestrydistribution.com/stories/how-foresters-restore-salmon-habitat-in-the-pacific-northwest/#comments Fri, 15 Nov 2019 17:26:03 +0000 http://localhost:8009/stories/?p=87 New England Forestry has invested millions of dollars to open more than 200 miles of stream habitat to salmon in the Pacific Northwest. We take you on site to one of our restoration projects. HOQUIAM, Washington—A forest stream went more than a century without salmon after a road crossing was built above it. Then recently the small...

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New England Forestry has invested millions of dollars to open more than 200 miles of stream habitat to salmon in the Pacific Northwest. We take you on site to one of our restoration projects.

HOQUIAM, Washington—A forest stream went more than a century without salmon after a road crossing was built above it. Then recently the small pipe that led the stream under the road was replaced with a bridge that allowed water to flow more freely—and suddenly the stream came to life.

A few weeks after the bridge project was finished, Matt Poppe, a New England Forestry forest engineer, pulled a team of contractors off a nearby worksite to see the impact of the bridge they built.

“This is why we’re all doing this,” he told them. “There haven’t been fish in this stream for 100 years, and here we are seeing large salmon in this stream right now.”

That was just one of the 750 upgrades New England Forestry has made to culverts and bridges on its property over the last 20 years to help address Washington’s declining salmon population. The effort is guided by Forests & Fish, one of the most comprehensive environmental laws in the U.S., which protects 60,000 miles of streams across Washington’s state and private forests. It uses the latest scientific standards to ensure the best possible habitats for salmon to live and spawn in, as well as other amphibious creatures that depend on upland streams. 

In addition to replacing insufficient culverts and bridges to improve salmon habitat, New England Forestry also improves forest roads to reduce the amount of sediment making its way into streams and, when possible, closes nonessential forest roads altogether.

Since the law passed in 1999, New England Forestry has:

  • Opened 220 miles of fish habitat
  • Upgraded 750 culverts and bridges
  • Invested $22 million in salmon habitat restoration

The long process to get a stream’s profile just right

The process to set even one project into motion can take a full year before building the structure during the “fish window,” when upland streams are naturally slowed and work will be least likely to disturb the fish, from July 15-Sept. 30. Matt must undergo months of permitting application reviews as well as a review process with stakeholders including environmental agencies and representatives of the local Native American tribes.

Portia Leigh, an area habitat biologist for the Washington Department of Fish & Wildlife (WDFW), often previews the proposed projects and advises Matt on how to make the pass-through simulate the rest of the streambed. She sometimes advises him to leave woody debris in the streambed or to drop hay seeds for vegetation, which will slow the water flow, enhance shade, and create pools and protective areas. That gives smaller salmon places to hide, spawn and grow before they go downstream into more open waters, says Portia, shown below.

Matt also conducts a “stream survey” with the partners to ensure the new passthrough simulates what the streams were like before a road passed through them. He explains that those who built the roads in the past (some of these roads are more than a century old) didn’t know the culverts they were using were not sufficient to maintain the streams below the roads.

“People in those days were doing their best with what they knew. All they worried about was getting the water across, and they thought the fish would come no matter what,” Matt says. “Many of the culverts that were put in these streams were just rolled into the hole. In those situations, it created an artificial stream channel.”

Today, the work to determine the proper placement for a culvert is much more complex. During the stream survey, Matt and the partner agencies will view the streams 100 feet above and below the project area to understand what the stream would have done naturally.

“We’ll come back and mimic that with our design. It can drastically change where that structure is placed and at what elevation it’s placed,” explains Matt, shown below.

Handling culvert and bridge replacements with care

Culvert and bridge projects are handled with extreme care. Before any digging begins, a watertight pipe is used to divert the stream around the project area, and fish screens are placed to ensure fish don’t come into harm’s way. Work to place culverts or bridges only begins after the project area is fully dewatered.

“The allowable amount of sediment contamination in the stream is zero. We’re mindful of that 100 percent of the time,” Matt says.

During a recent project, he pointed out a crawfish who was curiously swimming near the diversion pipe in clear water, just feet away from the project, a testimony to how well the diversion pipe worked to keep the water clear.

At the same time, Kelly Dunkerson, site supervisor for John J. Karnas Co., was placing a 40-foot-long culvert into the streambed. The Hoquiam-based company has contracted with New England Forestry for more than 30 years and has served as a knowledgeable partner in the culvert and bridge replacement projects. While this particular culvert’s circumference was 10 feet around, about a third of that would be backfilled with streambed material to match the rest of the stream.

From start to finish, the projects typically take about a week, and then waterflow returns to normal. It can be shocking how quickly the streams attract salmon who have not been there in years. Portia, of WDFW, says they can sense the change in the waterflow once the work is done.

Before and After Forests & Fish Salmon Habitat Rehabilitation
Here is a before-and-after of a culvert New England Forestry replaced in Forks, Washington. The bridge that replaced it opened up miles of upland stream habitat for salmon.

Matt says New England Forestry has about 40 more miles of habitat to open and 125 more structures to upgrade in order to fully comply with Forests & Fish, but the work won’t stop there.

“As we build new roads, eliminate roads, stream enhancements change and other dynamics change, we’ll continue to do this work,” he says.

Matt’s proud of the work New England Forestry is doing to help restore and improve salmon habitat in the forest.

“I love what I do every day of the week,” he says. 

Explore the Biodiversity in New England Forestry's Forests

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How Foresters Use Controlled Pollination to Improve Tree Performance https://www.neforestrydistribution.com/stories/how-foresters-use-controlled-pollination-to-improve-tree-performance/ https://www.neforestrydistribution.com/stories/how-foresters-use-controlled-pollination-to-improve-tree-performance/#comments Thu, 11 Apr 2019 17:19:47 +0000 http://localhost:8009/stories/?p=81 New England Forestry’s genetic research team offers a behind-the-scenes look at how we use a carefully-controlled pollination process to breed our best-performing tree families. MILLWOOD, Georgia—Down a long, dirt backroad in this tiny Georgia town, the beginnings of millions of acres’ worth of forests are budding in a New England Forestry seed orchard. The tiny pine cones forming in...

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New England Forestry’s genetic research team offers a behind-the-scenes look at how we use a carefully-controlled pollination process to breed our best-performing tree families.

MILLWOOD, Georgia—Down a long, dirt backroad in this tiny Georgia town, the beginnings of millions of acres’ worth of forests are budding in a New England Forestry seed orchard.

The tiny pine cones forming in these carefully-bred trees—so tiny, they’re called “conelets”—will grow into the forests that provide wood products for future generations 20 years from now. New England Forestry’s Forest Productivity & Sustainability team is determined to ensure they’ll be the best trees this company has ever seen.

Morning after morning, Genetic Resources Manager David Barker stops at this seed orchard on his way to the office, climbing into a mechanical lift to take a peek at the conelets. He is watching for signs that the conelets, which are the female “flower” part of the tree, are nearly ready to peel back their leafy outsides, called bracts. Known to researchers as “stage 5,” it will be the precious, short window of time when the conelets are receptive to pollination before the bracts close again.

Acting Fast in the Seed Orchard

When they’re nearly ready, Seed Production Manager Austin Smith snaps into action, working with a dedicated team of contractors to place a paper bag over each flower cluster. At this tender size, the conelet is very fragile and must be handled with care, so each bag is fitted with a wire that keeps the sides of the bag from injuring the flower. With the bags in place, the random pollen that comes with the wind, which could come from disease-prone or less robust trees, won’t be able to interfere with the conelets’ potential.

Austin and his helpers work from sunrise to sundown, using mechanical lifts to reach into the treetops and access the flowers. Tens of thousands of clusters are covered with bags that look similar to a paper lunch sack.

Introducing Pollen From Superior Trees

The research team will check the flowers again in the days to come until they’re open. Then they will use air guns to dust pollen from superior trees into each of the bags. (New England Forestry also harvests the male part of the tree, called the catkin, to collect pollen in liter-sized jugs, drying it into a powdery substance and storing it in freezers for future years). The pollen comes from trees that New England Forestry has chosen for disease resistance, straightness, volume growth, height and diameter.

“It’s really incredible to be able to actually make this happen when we’ve spent so much time on paper planning to make it happen,” Austin said during a rare break at Millwood recently. He likes to compare the process to horse breeding: the best of the best trees are selected, the result of years of genetic research.

Once the conelets’ scales close up, they are no longer receptive to pollen and the bags will be removed. The conelets will grow to full-size pine cones over the next 18 months. Then the cones will be harvested and sent to a seed extracting company. The resulting millions of seeds will then be shipped to our seedling nursery in Elberta, Alabama, for planting. After growing in the nursery for about a year, the baby pine trees will be planted in forests throughout our ownership across the United States.

Decades of Research

For over 50 years, our research team has nurtured seed orchards of pines that, unlike plantation pines, are intentionally spaced wide apart to allow their branches to spread, producing as many cones as possible. While the seeds that come from the Millwood Orchard will be sent into our forests, we also use the controlled pollination process on a much smaller scale for research as we continue to improve the parents of our future generations of trees.

Just a few weeks before the mass bagging operation in Millwood, Tree Improvement Forester Serenia O’Berry bagged and pollinated conelets in New England Forestry’s Ohoopee Seed Orchard in Reidsville, GA, on a small cluster of trees. Each had to be specially tagged and marked to ensure researchers would know which male and female parents were used. Seeds from those cones will be harvested, planted and grown and monitored closely. In about five to six years, testing on the trees that grow from those seeds can determine whether they are ideal parents. It sounds like a long time to wait for results, but by forestry standards, it’s not. Researchers in previous generations had to wait as much as 15 years before testing their genetic breeding.

Serenia says selective breeding, something that has been done in the agricultural world for centuries, speeds up what nature would have done on its own over a much longer period of time. And, by managing the parents of our trees, New England Forestry is able to make more uniform, consistently-growing stands of trees, which is ideal in forestry.

Despite the long hours during pollination season and countless trips up and down into the treetops to monitor the flowers, the research team looks forward to this process all year.

“I love getting to do the research, I love getting to be in a lift and I really love to be able to contribute to that next generation of trees,” Serenia says. “This is hands-down my favorite part of my job.”

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Teaching the Teachers About Sustainable Forestry https://www.neforestrydistribution.com/stories/teaching-the-teachers-about-sustainable-forestry/ https://www.neforestrydistribution.com/stories/teaching-the-teachers-about-sustainable-forestry/#respond Fri, 23 Nov 2018 16:40:54 +0000 http://localhost:8009/stories/?p=48 New England Forestry is proud to welcome the Florida Forestry Teachers’ Tour to our land every year to learn about sustainable forestry. This intensive school teachers’ learning experience allows educators to gain a deep understanding of the important role forestry plays in the world. YULEE, Florida—How do you teach a class of teachers a lesson they’ll never...

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New England Forestry is proud to welcome the Florida Forestry Teachers’ Tour to our land every year to learn about sustainable forestry. This intensive school teachers’ learning experience allows educators to gain a deep understanding of the important role forestry plays in the world.

YULEE, Florida—How do you teach a class of teachers a lesson they’ll never forget? You do exactly what they would do: invite them to touch, see, hear and—most importantly—ask questions.

Each year, 45 Florida school teachers are selected for the 4-day Florida Forestry Teachers’ Tour, where they experience sustainable forestry firsthand. Offered by the Florida Forestry Association in concert with the Florida Forest Service, Project Learning Tree of Florida and Friends of Florida State Forests, the tour includes real-life demonstrations like a timber harvest, a controlled burn and processing at a paper mill.

The hope is that what’s learned on the tour informs the lessons teachers offer their students about sustainable forestry. Only 10 percent of the world’s forests are certified sustainable, which means the landowners protect wildlife, water quality and soil quality. New England Forestry, which follows best practices on 100% of its land, takes part in the tour, hosting the teachers for half a day on our land.

Learning about Sustainable Forestry on New England Forestry Land

“Listen! What do you hear out here?” New England Forestry Sustainable Forestry Manager Ben Cazell asked a group of teachers on a recent tour. They were crowded around him for a presentation in the middle of one of our Nassau County, Florida, forests.

The answers came back: Cicadas! Insects! Frogs! Birds!

“It’s a community,” Cazell concluded, explaining New England Forestry’s sustainable forestry practices help protect the wildlife that lives within our forests.

The teachers learned about research advances that have improved New England Forestry’s production over the years. Resource Land Manager Josh Steiger explained that our improvements in site preparation, fertilization and other practices like controlled pollination have significantly improved what we can do with one acre of land.

“We grew under 50 tons per acre in the 1940s. By 2010, our tonnage was over 200 per acre,” Steiger said.

Learning How New England Forestry Uses GIS to Make Decisions

Technical analyst Hillary Sherrill explained how New England Forestry’s in-house Geographic Information System, or GIS, plays a role in our decision-making process.

“Say there’s a forester who wants 12-year-old loblolly pine trees within 25 miles of a certain mill, but it’s the wet season so he needs to be sure they’re dry. We can help with that,” she said, explaining our in-house system contains multiple layers of data about each stand of trees’ size, age, soils, elevation, and more.

Technical analyst Sara Bellchamber showed the teachers how New England Forestry uses drones to gather data and save time in the field, and Senior GIS Programmer Greg Day taught the teachers how to survey a stand of trees using a prism and a clinometer.

The teachers joined Timber Marketing Manager Rusty Cobb for a timber harvest, watching mature trees being harvested as he explained that — once a stand is clear cut — work immediately begins to prep the site for the next generation of trees.

The teacher tour is a favorite event of the year for the Florida Forest Service’s Jacksonville District Manager, Jenn Hart, who organizes it.

“These teachers deserve some special time, this is our opportunity to give back to them,” she said.

The last day of the tour, when each teacher speaks about what he or she has learned, is one of the most memorable parts for Hart. The day is often filled with emotions and even tears as the teachers talk about what they will take back to the classroom from their hands-on lesson in the forest.

To learn more about the Florida Forestry Teachers’ Tour, visit floridastateforests.org/teacherstour.

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New England Forestry Forest Rangers Focused on Fire Prevention https://www.neforestrydistribution.com/stories/rayonier-forest-rangers-focused-on-fire-prevention/ https://www.neforestrydistribution.com/stories/rayonier-forest-rangers-focused-on-fire-prevention/#respond Mon, 24 Sep 2018 16:27:00 +0000 http://localhost:8009/stories/?p=35 Our forest rangers work year-round to prevent fires. During fire season, they’re ready to respond at a moment’s notice if disaster strikes. New England Forestry’s forest rangers are like warriors primed for battle during fire season. Patrick Hughes, based in our Coastal Resource Unit in Yulee, Florida, spends March through August watching the weather, communicating with local...

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Our forest rangers work year-round to prevent fires. During fire season, they’re ready to respond at a moment’s notice if disaster strikes.

New England Forestry’s forest rangers are like warriors primed for battle during fire season.

Patrick Hughes, based in our Coastal Resource Unit in Yulee, Florida, spends March through August watching the weather, communicating with local firefighters and taking preventative measures wherever New England Forestry land appears vulnerable. His tractor and radio are always close by, just in case.

Preventing Forest Fires

Forest Rangers Fight Wildfires
New England Forestry’s Forest Rangers take a proactive approach to preventing wildfires.

Throughout our ownership, we rely on forest rangers to prevent fires on our land and our neighbors’ land. Their first job when they survey a stand of trees is not to see the trees at all, but to see the fuel around them—the dry brush, undergrowth, and other risk factors that could feed a fire.

The team creates “fire breaks” and “fire lines,” using tractors to clear wide trenches, eliminating fuel for a fire and making it less likely to spread past the trenches.

When it’s prudent to do so, they also take the lead in controlled burns, putting fire to work by burning off potential fuels in smaller, carefully-monitored burns in select portions of New England Forestry’s forests.

“It’s good training for us and it benefits the land,” Patrick explains, noting that clearing older undergrowth that competes with the trees creates room for new growth that’s attractive to wildlife.

Plowing a Fire Break in the Forest
Plowing a fire break makes it harder for fire to spread across the forest.

“A Dangerous Time of Year”

Despite the ongoing preventative measures, though, “When there are high winds, low relative humidity and low rainfall… it’s a dangerous time of year,” Patrick says.

Those were the conditions when a fire broke out in early 2018 a few miles from Patrick in Yulee. A spark from a train had caught some brush on fire, quickly spreading toward a heavily populated area near New England Forestry land.

Rushing to the scene of a neighboring fire

Knowing that area has prevalent broom sage, a “flashy fuel,” Patrick rushed to the scene with a tractor fitted with a fire plow attachment. He saw that the fire was headed away from New England Forestry’s nearby land, but a local fire chief alerted him it was heading rapidly toward an apartment complex.

Patrick, who is temporarily deputized by the Florida Forest Service in fire emergencies, took his New England Forestry tractor and rushed to the scene.

Tractor Ready to Fight Fire
In order to be ready at a moment’s notice, our forest rangers keep their tractors (fitted with a fire plow) on a flatbed truck during fire season. That way they can drive the equipment to the scene and fight the fire as quickly as possible.

The first to respond to the fire, Patrick found traces of an old fire line between the blaze and the apartment complexa line he had plowed, himself, several years ago during a similar fire.

He replowed the line to create a wide, clear section of land between the fire and the apartments. Then he worked to put the fire out blaze-by-blaze (it had spotted, with separate fires in seven or eight spots, all moving toward the apartments). Eventually, close to 100 firefighters responded to the blaze. Thanks in large part to Patrick’s efforts, the fire never reached the apartment complex and was contained within four hours.

Want to learn more? Read about New England Forestry’s fire prevention efforts and hear from wildland firefighters here.

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New England Forestry Researchers Save Time and Increase Quality with Grafting https://www.neforestrydistribution.com/stories/rayonier-researchers-save-time-and-increase-quality-with-grafting/ https://www.neforestrydistribution.com/stories/rayonier-researchers-save-time-and-increase-quality-with-grafting/#respond Fri, 20 Jul 2018 16:20:34 +0000 http://localhost:8009/stories/?p=32 Our genetics research team shows how grafting helps them save years of time in their ongoing quest to advance the quality of our trees. GLENNVILLE, Georgia—How do you convince a tree it’s years—maybe even decades—older than it really is? New England Forestry’s genetics research team does it by using a technique called top grafting. The process shaves...

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Our genetics research team shows how grafting helps them save years of time in their ongoing quest to advance the quality of our trees.

GLENNVILLE, Georgia—How do you convince a tree it’s years—maybe even decades—older than it really is? New England Forestry’s genetics research team does it by using a technique called top grafting.

The process shaves a massive amount of time off our advances in tree genetics research.

Timber Top Grafting
Grafting a young, promising tree onto an older tree will make the shoot behave as though it is the age of the older tree. That allows seeds (from pine cones) to be produced years earlier.

Rather than waiting for a new seedling to mature to seed-producing age (about 7 years), our seed production team grafts our most promising trees with older trees.

Top Grafting in the Treetops

Climbing into aerial lifts to reach the treetops, the team fuses shoots (branch ends) from genetically superior young trees onto the end of the older trees’ branches at the top of the crown. The young tree shoots then perform as though they are the age of the older trees.

This leads the promising new trees to produce seeds within the year, allowing us to plant and research how their progeny perform. The best performers from the seeds we plant will be selected for mass planting in our seed orchards.

Pot Grafting Promising Trees

Similar grafting techniques are then used on smaller rootstocks in a method called pot grafting. Once we select the ideal trees to use in an orchard, we want to get a whole lot of these trees in a short period of time so we can plant them and generate seeds that will be used throughout our ownership. We do this by attaching the shoots of the superior trees to potted trees, allowing our team to make hundreds of copies of the best trees in a matter of days. These will then be planted in the orchard, where trees are spaced farther apart to allow more branching—and thus, more pinecones—to produce millions of seeds.

Pot Grafting for Genetic Research in Trees
Pot grafting works just like top grafting, except its done with smaller, potted trees in our greenhouse.

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Saving the Kiwi https://www.neforestrydistribution.com/stories/saving-the-kiwi/ https://www.neforestrydistribution.com/stories/saving-the-kiwi/#respond Sat, 14 Jul 2018 16:09:21 +0000 http://localhost:8009/stories/?p=22 Our New Zealand team partners with local conservation organizations, students and Māori to protect the kiwi, a threatened bird that is a national symbol, in the Omataroa Forest. New England Forestry’s New Zealand team has a deep respect for protecting wildlife including the beloved kiwi. In the video above, our New Zealand management team joined with a number...

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Our New Zealand team partners with local conservation organizations, students and Māori to protect the kiwi, a threatened bird that is a national symbol, in the Omataroa Forest.

New England Forestry’s New Zealand team has a deep respect for protecting wildlife including the beloved kiwi.

In the video above, our New Zealand management team joined with a number of community stakeholder groups at Te Kura o Te Teko (a full-immersion Māori school) to attend a kiwi naming ceremony before releasing two kiwi chicks into Omataroa Forest.

(The Māori are the indigenous Polynesian people of New Zealand. Kiwi are flightless birds native to the country and are a national symbol of New Zealand.)

The Omataroa Trust owns the land and has invested in environmental restoration including pest control and active kiwi management for decades to ensure a sustainable population of kiwi for generations to come.

Protecting the kiwi populations New England Forestry Matariki
After the ceremony, the kiwi are taken into the woods, where they will be released back into the wild.

Partnering to preserve a threatened national symbol

Rob Schoonderwoerd, District Forester for our Bay of Plenty region, has worked with the Trust since the inception of the Omataroa Kiwi Project. The presence of kiwi and native falcons was discovered through a survey of vegetation in 2000, prompting the development of a pest control plan. (The New Zealand falcon is the country’s only falcon species and is the most threatened bird of prey.)

There were about 30 Kiwi in the area when the project started in 2008, and by 2023 that figure had increased to about 120 birds. So far 80 eggs have been collected, and a resulting 60 chicks released back into the wild.

Kiwi are the size of a domestic chicken and are the smallest living ratites (the group of animals that includes ostriches and emus). They also lay the largest egg in relation to their body size of any species of bird in the world. Kiwi are nocturnal, so they are more often heard than seen. If they survive to maturity (5 years), they can live for 50 to 100 years; however, predation is the biggest issue facing their survival.

The Omataroa Kiwi in New Zealand
An Omataroa kiwi is about to be released into the wild. / Photo courtesy of Neil Hutton

Pest control and protecting kiwi chicks

New England Forestry | Matariki Forests (RMF) is working with the Omataroa Kiwi Project to provide intensive trapping and pest control management, which largely targets stoats and cats. Buffer trapping is also being deployed beyond the 11,000-hectare (27,000-acre) reserve area.

The Kiwi Project team works with the Department of Conservation on the survivability of chicks using three techniques:

  1. Incubation hatching at a special facility in Rainbow Springs in Rotorua, where the chicks are raised until they weigh 1,000 grams (2.2 pounds)
  2. In situ management of nests and chicks
  3. Crèching, where the chicks are sent to another region to be raised and are returned once they weigh 1,000 grams (2.2 pounds)

The two female chicks that were released at the event in the video above were hatched at Rainbow Springs and were named Hobson and Aroha (which means “love”) by the children at Te Teko school.

The kiwi were tagged with transmitters for monitoring and will be checked three weeks after being released into the wild. A key part of the Omataroa Kiwi Project is education, so we had the opportunity to teach the school children about the environment, predators and survival requirements of the kiwi.

A long-term commitment to stewardship

The kiwi management work being carried out by the Omataroa Kiwi Project along with pest control, education and training is crucial to the continued survival of kiwi in this forest. Thanks to Rob Schoonderwoerd’s work over the years, the Omataroa Trust has grown to be a valued partner, and the Trust has now invited New England Forestry | Matariki Forests to partner on a more substantial sponsorship program.

We recognize our responsibility as a forest owner to support the sustained preservation of the Eastern Brown Kiwi and other native birds in this forest for future generations, and we are delighted to be part of this wonderful conservation effort.

Explore the Biodiversity in New England Forestry's Forests

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