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Journal of Forestry · 2026 · Springer
The US Gulf Coastal Plain is a region of diverse forests and management systems and dynamic land use changes. These drivers affect carbon (C) stocks at ecosystem to regional scales, in turn affecting processes such as forest regeneration, hydrologic and biogeochemical cycling, and social and economic systems. We quantified land use change and forest management effects on C stocks in the Gulf Coastal Plain, focusing on soils, u...
Journal of Forestry · 2020 · Vol. 118 · Issue 1 · Springer
The importance of forests for sequestering carbon has created widespread interest among land managers for identifying actions that maintain or enhance carbon storage in forests. Managing for forest carbon under changing climatic conditions underscores a need for resources that help identify adaptation actions that align with carbon management. We developed the Forest Carbon Management Menu to help translate broad carbon manage...
Journal of Forestry · 2011 · Vol. 109 · Issue 8 · Springer
Linda Heath; Clark Row; Robert Perschel; Douglas Boucher; Patricia Elias; Katherine Lininger; Calen May-Tobin; Earl Saxon; Steven Ruddell; Sally Collins; Sarah Ruddell; Mo Zhou; Matthew Pelkki; Christopher Galik; Robert Abt; Maria Milanes-Murcia; Helge Eng; Sandy Cantler; Špela Pezdevšek Malovrh; Mersudin Avdibegovic; Donald Hodges; Brett Butler; Paul Catanzaro; John Greene; Jaketon Hewes; Michael Kilgore; David Kittredge; Zhao Ma; Mary Tyrrell; John Barnwell; Kelsey Delaney; David Cleaves; David Cleaves; Shira Yoffe; Chris Swanston; Maria Janowiak; Bill Dunkelberger; Timothy Robards; David Saah; Jay O'Laughlin; Bruce Lippke; Elaine Oneil; Shorna Allred; Ashley Dayer; Richard Stedman; Nianfu Song; Francisco Aguilar; Stephen Shifley; Michael Goerndt; Robert Malmsheimer; James Bowyer; Jeremy Fried; Edmund Gee; Bob Izlar; Reid Miner; Ian Munn; Elaine Oneil; William Stewart; Kelsey Delaney; Robert Malmsheimer; James Bowyer; Jeremy Fried; Edmund Gee; Bob Izlar; Reid Miner; Ian Munn; Elaine Oneil; William Stewart; Kelsey Delaney; Courtney Schultz; Theresa Jedd; Nathan Havill; Bradley Onken; Kurt Gottschalk; Philip Cannon; Robert Hauff; Flint Hughes; Tavita Togia; Aubrey Moore; Roland Quitugua; Deborah McCullough; Therese Poland; Noel Schneeberger; Robert Progar; Janet Valle; George Markin; Joe Milan; Tom Barbouletos; Matt Rinella; Anna Soper; James Kruse; Stephen Enloe; Stephen Pecot; Robert Hauff; Sheri S. Mann; Aubrey Moore; Roland Quitugua; Cas Vanderwoude; Mary Tyrrell; Gillian Paul; Jeffrey Ward; Stella Cousins; Partick Comins; Angela Gupta; Mark Abrahamson; Val Cervenka; Jeff Hahn; Dean Herzfeld; Ken Holman; Gary Johnson; Gary Wyatt; Amy Mayer; Michael Buck; Rachel Neville; Jean Fujikawa; Cynthia King; Robert Hauff; Leyla Kaufman; Mark Wright; Leyla Kaufman; Juliana Yalemar; Mark Wright; John Heissenbuttel; Catherine Parks; Ned Nikolov; Karl Zeller; John Heissenbuttel; John Heissenbuttel; John Heissenbuttel; Jeremy Fried; Theresa Jain; Jonathan Sandquist; Larry Potts; Steven Seybold; Tom Coleman; Ken Werner; Brian Richardson; Francisco Ferreira; George Matusick; Katinka Ruthrof; Giles Hardy
7Massive fires in Indonesian peatlands in the 1990s and in eastern Russian peatlands in 2002 and last year have highlighted the need to manage forests overlying peat deposits, as well as converted peat forests and open peatlands. Peat or peaty soils, contain 65% or more of partially decayed vegetation, can burn freely or underground. They cover some 10 percent of worldwide forests and contain 25 percent of all terrestrial carb...
Global Change Biology · 2011 · Vol. 17 · Issue 2 · Wiley
Soil carbon turnover models generally divide soil carbon into pools with varying intrinsic decomposition rates. Although these decomposition rates are modified by factors such as temperature, texture, and moisture, they are rationalized by assuming chemical structure is a primary controller of decomposition. In the current work, we use near edge X‐ray absorption fine structure (NEXAFS) spectroscopy in combination with differen...
Global Change Biology · 2009 · Vol. 15 · Issue 9 · Wiley
We investigated mean residence time (MRT) for soil organic carbon (SOC) sampled from paired hardwood and pine forests located along a 22 °C mean annual temperature (MAT) gradient in North America. We used acid hydrolysis fractionation, radiocarbon analyses, long‐term laboratory incubations (525‐d), and a three‐pool model to describe the size and kinetics of the acid insoluble C (AIC), active and slow SOC fractions in soil. We...
Global Change Biology · 2009 · Vol. 15 · Issue 8 · Wiley
Alterations in forest productivity and changes in the relative proportion of above‐ and belowground biomass may have nonlinear effects on soil organic matter (SOM) storage. To study the influence of plant litter inputs on SOM accumulation, the Detritus Input Removal and Transfer (DIRT) Experiment continuously alters above‐ and belowground plant inputs to soil by a combination of trenching, screening, and litter addition. Here,...
Global Change Biology · 2009 · Vol. 15 · Issue 6 · Wiley
Our research takes advantage of a historical trend in natural reforestation of abandoned tropical pastures to examine changes in soil carbon (C) during 80 years of secondary forest regrowth. We combined a chronosequence approach with differences in the natural abundance of 13 C between C3 (forest) and C4 (pasture) plants to estimate turnover times of C in the bulk soil and in density fractions. Overall, gains in secondary fore...