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Physical protection in aggregates has been commonly accepted as a fundamental mechanism for soil organic carbon (SOC) sequestration for China's paddy soils. However, the role of chemical protection of physically protected SOC has not yet been evaluated. Herewith the authors report a cross-site study on SOC binding forms of both bulk soils and different particle size fractions (PSFs) obtained by low-energy...
Developing realistic soil carbon (C) sequestration strategies for China's sustainable agriculture relies on accurate estimates of the amount, retention and turnover rates of C stored in paddy soils. Available C estimates to date are predominantly for the tilled and flood-irrigated surface topsoil (ca. 30 cm). Such estimates cannot be used to extrapolate to soil depths of 100 cm since soil organic...
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