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Formation of soil organic matter via biochemical and physical pathways of litter mass loss
by
Horton, Andrew J.
, Parton, William J.
, Soong, Jennifer L.
, Haddix, Michelle L.
, Cotrufo, M. Francesca
, Campbell, Eleanor E.
, Wall, Diana H.
in
704/106/47
/ 704/158/2466
/ 704/158/47
/ 704/172/169
/ Decomposition
/ Dissolved organic matter
/ Earth Sciences
/ Earth System Sciences
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ Grasslands
/ Inorganic carbon
/ letter
/ Litter
/ Mathematical models
/ Mineralization
/ Soil formation
/ Soil organic matter
/ Soil stabilization
/ Soils
2015
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Formation of soil organic matter via biochemical and physical pathways of litter mass loss
by
Horton, Andrew J.
, Parton, William J.
, Soong, Jennifer L.
, Haddix, Michelle L.
, Cotrufo, M. Francesca
, Campbell, Eleanor E.
, Wall, Diana H.
in
704/106/47
/ 704/158/2466
/ 704/158/47
/ 704/172/169
/ Decomposition
/ Dissolved organic matter
/ Earth Sciences
/ Earth System Sciences
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ Grasslands
/ Inorganic carbon
/ letter
/ Litter
/ Mathematical models
/ Mineralization
/ Soil formation
/ Soil organic matter
/ Soil stabilization
/ Soils
2015
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Formation of soil organic matter via biochemical and physical pathways of litter mass loss
by
Horton, Andrew J.
, Parton, William J.
, Soong, Jennifer L.
, Haddix, Michelle L.
, Cotrufo, M. Francesca
, Campbell, Eleanor E.
, Wall, Diana H.
in
704/106/47
/ 704/158/2466
/ 704/158/47
/ 704/172/169
/ Decomposition
/ Dissolved organic matter
/ Earth Sciences
/ Earth System Sciences
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ Grasslands
/ Inorganic carbon
/ letter
/ Litter
/ Mathematical models
/ Mineralization
/ Soil formation
/ Soil organic matter
/ Soil stabilization
/ Soils
2015
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Formation of soil organic matter via biochemical and physical pathways of litter mass loss
Journal Article
Formation of soil organic matter via biochemical and physical pathways of litter mass loss
2015
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Overview
Soil organic matter is a large global carbon pool. Isotopic labelling of litter in the lab and the field reveals that soil organic matter forms from labile organic compounds and litter fragments early and late in decomposition, respectively.
Soil organic matter is the largest terrestrial carbon pool
1
. The pool size depends on the balance between formation of soil organic matter from decomposition of plant litter and its mineralization to inorganic carbon. Knowledge of soil organic matter formation remains limited
2
and current C numerical models assume that stable soil organic matter is formed primarily from recalcitrant plant litter
3
. However, labile components of plant litter could also form mineral-stabilized soil organic matter
4
. Here we followed the decomposition of isotopically labelled above-ground litter and its incorporation into soil organic matter over three years in a grassland in Kansas, USA, and used laboratory incubations to determine the decay rates and pool structure of litter-derived organic matter. Early in decomposition, soil organic matter formed when non-structural compounds were lost from litter. Soil organic matter also formed at the end of decomposition, when both non-structural and structural compounds were lost at similar rates. We conclude that two pathways yield soil organic matter efficiently. A dissolved organic matter–microbial path occurs early in decomposition when litter loses mostly non-structural compounds, which are incorporated into microbial biomass at high rates, resulting in efficient soil organic matter formation. An equally efficient physical-transfer path occurs when litter fragments move into soil.
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