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The Effects of Rape Residue Mulching on Net Global Warming Potential and Greenhouse Gas Intensity from No-Tillage Paddy Fields

机译:油菜残茬覆盖对免耕稻田净全球升温潜能和温室气体强度的影响

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摘要

A field experiment was conducted to provide a complete greenhouse gas (GHG) accounting for global warming potential (GWP), net GWP, and greenhouse gas intensity (GHGI) from no-tillage (NT) paddy fields with different amounts of oilseed rape residue mulch (0, 3000, 4000, and 6000 kg dry matter (DM) ha−1) during a rice-growing season after 3 years of oilseed rape-rice cultivation. Residue mulching treatments showed significantly more organic carbon (C) density for the 0–20 cm soil layer at harvesting than no residue treatment. During a rice-growing season, residue mulching treatments sequestered significantly more organic C from 687 kg C ha−1 season−1 to 1654 kg C ha−1 season−1 than no residue treatment. Residue mulching significantly increased emissions of CO2 and N2O but decreased CH4 emissions. Residue mulching treatments significantly increased GWP by 9–30% but significantly decreased net GWP by 33–71% and GHGI by 35–72% relative to no residue treatment. These results suggest that agricultural economic viability and GHG mitigation can be achieved simultaneously by residue mulching on NT paddy fields in central China.
机译:进行了田间试验,以提供完整的温室气体(GHG),该温室气体考虑了不同数量油菜残渣覆盖物的免耕稻田的全球变暖潜力(GWP),净GWP和温室气体强度(GHGI)。油菜种植3年后的水稻生长季节(0、3000、4000和6000 kg干物质(DM)ha -1 )。残留覆盖处理显示收获时0–20 cm土壤层的有机碳(C)密度明显高于无残留处理。在水稻生长季节,残茬覆盖处理从687 kg C ha -1 季节 -1 到1654 kg C ha -1 < / sup>季节 -1 比没有残留物处理。残渣覆盖显着增加了CO2和N2O的排放,但减少了CH4的排放。相对于无残渣处理,残渣覆盖处理显着提高了GWP 9–30%,但净净GWP显着降低了33–71%,GHGI降低了35–72%。这些结果表明,通过在中国中部的NT稻田覆盖秸秆,可以同时实现农业经济活力和温室气体减排。

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