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Molecular turnover time in restoration of labile organic carbon and enzyme activities due to minimal soil disturbance and increased residue retention in subtropical India: A review

International Journal of Chemical Studies · 2018 · Vol. 6(5) · pp. 1309–1329

Abstract

The formation of aggregates plays a key role in shaping soil microenvironment, which in turn influences microbial community structure and organic carbon (C) dynamics in soil. Carbon in large macro-aggregates (>2 mm), small macro-aggregates (0.25–2 mm), and free organic matter (>0.053 mm) was significantly positively correlated with C, lignin, and polyphenols. Carbon in micro-aggregates and fine particles (

Soil Carbon and Nitrogen DynamicsSoil erosion and sediment transportSoil carbonCarbon fibersChemistryLigninResidue (chemistry)Organic matterTotal organic carbonSoil organic matterSubtropicsEnvironmental chemistry
Citations
1
FWCI
0.71
field-weighted impact
References
0
Percentile
69%
vs. same field & year
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Molecular turnover time in restoration of labile organic carbon and enzyme activities due to minimal soil disturbance and increased residue retention in subtropical India: A review · Scinovex