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- W2013735174 abstract "Soil respiration is an important process for carbon geochemical cycling. Based on our five long‐term fertilizer experiments, soil respiration was measured using pot experiments with or without planting soybean. Soil respiration rates and soybean root biomass were determined at different observation times. Soil respiration rates due to soil microbial activity could be estimated by extrapolating a newly derived regressive equation at zero root biomass. Soil microbial respiration rates in the control were also observed directly, ranging from 16.0 to 42.7 mg carbon (C) m−2 h−1. Average soil microbial respiration rates from the regression analyses and direct observations were 32.9 and 27.8 mg C m−2 h−1, respectively. The average proportions of soil respiration rates due to the soybean growth were 63.0% using the regressive equation and 69.8% from direct observation. Therefore, the application of these two methods could provide new insight for separating plant root respiration from soil microbial respiration, which is important for estimating their individual contributions to atmospheric carbon dioxide." @default.
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- W2013735174 date "2009-05-01" @default.
- W2013735174 modified "2023-10-16" @default.
- W2013735174 title "Root and Microbial Contributions to Soil Respiration during a Soybean Growing Season" @default.
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- W2013735174 doi "https://doi.org/10.1080/00103620902832071" @default.
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