Relative contribution of maize and external manure amendment to soil carbon sequestration in a long-term intensive maize cropping system
Wenju Zhang, Kailou Liu, J. Wang, Xingfang Shao, Minggang Xu, Jianwei Li, Xiujun Wang, Daniel V. Murphy
Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Jiangxi Institute of Red Soil Earth System Science Interdisciplinary Center
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摘要与影响
We aimed to quantify the relative contributions of plant residue and organic manure to soil carbon sequestration. Using a 27-year-long inorganic fertilizer and manure amendment experiment in a maize (Zea mays L.) double-cropping system, we quantified changes in harvestable maize biomass and soil organic carbon stocks (0-20 cm depth) between 1986-2012. By employing natural (13)C tracing techniques, we derived the proportional contributions of below-ground crop biomass return (maize-derived carbon) and external manure amendment (manure-derived carbon) to the total soil organic carbon stock. The average retention of maize-derived carbon plus manure-derived carbon during the early period of the trial (up to 11 years) was relatively high (10%) compared to the later period (22 to 27 years, 5.1-6.3%). About 11% of maize-derived carbon was converted to soil organic carbon, which was double the retention of manure-derived carbon (4.4-5.1%). This result emphasized that organic amendments were necessary to a win-win strategy for both SOC sequestration and maize production.
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生物医学Soil Carbon and Nitrogen Dynamics
Bioenergy crop production and management · Soil Management and Crop Yield
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