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The Effects of Management on Soil and Plant Carbon Sequestration in Slash Pine Plantations
by
Morris, Lawrence A.
, Hendrick, Ronald L.
, Shan, Jianping
in
Animal and plant ecology
/ Animal, plant and microbial ecology
/ Applied ecology
/ below‐ground carbon allocation
/ Biological and medical sciences
/ Biomass production
/ carbon
/ Carbon sequestration
/ coarse-textured soils
/ diammonium phosphate
/ Fertilization
/ Florida
/ forest management
/ Forest management. Stand types and stand dynamics. Silvicultural treatments. Tending of stands. Natural regeneration
/ forest plantations
/ Forest soils
/ Forestry
/ Fundamental and applied biological sciences. Psychology
/ intensive forestry
/ Pine trees
/ Pinus
/ Pinus elliottii
/ Plant roots
/ Plantations
/ primary productivity
/ roots
/ Sand soils
/ sandy soils
/ soil carbon
/ Soil ecology
/ Soil respiration
/ soil treatment
/ Southeastern United States
/ spodosols
/ Stand types and stand dynamics. Silvicultural treatments. Tending of stands. Natural regeneration
/ Synecology
/ Terrestrial ecosystems
/ understorey‐elimination
/ understory
2001
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The Effects of Management on Soil and Plant Carbon Sequestration in Slash Pine Plantations
by
Morris, Lawrence A.
, Hendrick, Ronald L.
, Shan, Jianping
in
Animal and plant ecology
/ Animal, plant and microbial ecology
/ Applied ecology
/ below‐ground carbon allocation
/ Biological and medical sciences
/ Biomass production
/ carbon
/ Carbon sequestration
/ coarse-textured soils
/ diammonium phosphate
/ Fertilization
/ Florida
/ forest management
/ Forest management. Stand types and stand dynamics. Silvicultural treatments. Tending of stands. Natural regeneration
/ forest plantations
/ Forest soils
/ Forestry
/ Fundamental and applied biological sciences. Psychology
/ intensive forestry
/ Pine trees
/ Pinus
/ Pinus elliottii
/ Plant roots
/ Plantations
/ primary productivity
/ roots
/ Sand soils
/ sandy soils
/ soil carbon
/ Soil ecology
/ Soil respiration
/ soil treatment
/ Southeastern United States
/ spodosols
/ Stand types and stand dynamics. Silvicultural treatments. Tending of stands. Natural regeneration
/ Synecology
/ Terrestrial ecosystems
/ understorey‐elimination
/ understory
2001
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Do you wish to request the book?
The Effects of Management on Soil and Plant Carbon Sequestration in Slash Pine Plantations
by
Morris, Lawrence A.
, Hendrick, Ronald L.
, Shan, Jianping
in
Animal and plant ecology
/ Animal, plant and microbial ecology
/ Applied ecology
/ below‐ground carbon allocation
/ Biological and medical sciences
/ Biomass production
/ carbon
/ Carbon sequestration
/ coarse-textured soils
/ diammonium phosphate
/ Fertilization
/ Florida
/ forest management
/ Forest management. Stand types and stand dynamics. Silvicultural treatments. Tending of stands. Natural regeneration
/ forest plantations
/ Forest soils
/ Forestry
/ Fundamental and applied biological sciences. Psychology
/ intensive forestry
/ Pine trees
/ Pinus
/ Pinus elliottii
/ Plant roots
/ Plantations
/ primary productivity
/ roots
/ Sand soils
/ sandy soils
/ soil carbon
/ Soil ecology
/ Soil respiration
/ soil treatment
/ Southeastern United States
/ spodosols
/ Stand types and stand dynamics. Silvicultural treatments. Tending of stands. Natural regeneration
/ Synecology
/ Terrestrial ecosystems
/ understorey‐elimination
/ understory
2001
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The Effects of Management on Soil and Plant Carbon Sequestration in Slash Pine Plantations
Journal Article
The Effects of Management on Soil and Plant Carbon Sequestration in Slash Pine Plantations
2001
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Overview
1. Intensively managed pine plantations in the south-eastern United States can play an important role in global carbon sequestration both through accumulation of carbon in wood used in long-lasting products as well as through increased soil carbon storage. Fertilization and understorey-elimination are two commonly used intensive management practices in the south-eastern United States that have the potential to increase carbon storage in vegetation and affect soil carbon. 2. In this study, we assessed the effects of these practices on carbon accumulation in vegetation biomass and in the soil of 17-year-old slash pine Pinus elliottii plantations in the flatwoods of northern Florida, USA. 3. Three treatments, fertilization, understorey-elimination, and fertilization plus understorey-elimination, were evaluated and compared with an untreated control. 4. All three treatments increased above-ground biomass accumulation compared with the untreated control; understorey-elimination also increased biomass of the forest floor litter, with or without fertilization. 5. Although understorey-elimination increased above-ground production, as a result of reduced below-ground production total net primary production was decreased in plots from which the understorey was eliminated. 6. Soil carbon storage was lower in plots where the understorey was eliminated, with or without fertilization. This appeared to be the result of reduced fine root growth and mortality but also may have reflected reduced litterfall inputs early in the rotation. 7. Our results indicate that intensive management of pine plantations on sandy flat-woods soils can increase carbon sequestration, but these increases will be the result of increased carbon accumulation in biomass and its long-term uses rather than through increased soil carbon.
Publisher
Blackwell Science Ltd,Blackwell Science,Blackwell Publishing Ltd
Subject
/ Animal, plant and microbial ecology
/ below‐ground carbon allocation
/ Biological and medical sciences
/ carbon
/ Florida
/ Forestry
/ Fundamental and applied biological sciences. Psychology
/ Pinus
/ roots
/ Stand types and stand dynamics. Silvicultural treatments. Tending of stands. Natural regeneration
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