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Net global warming potential and greenhouse gas intensity as affected by different water management strategies in Chinese double rice-cropping systems

机译:中国双季稻田不同水管理策略对全球净增温潜势和温室气体强度的影响

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摘要

This study provides a complete account of global warming potential (GWP) and greenhouse gas intensity (GHGI) in relation to a long-term water management experiment in Chinese double-rice cropping systems. The three strategies of water management comprised continuous (year-round) flooding (CF), flooding during the rice season but with drainage during the midseason and harvest time (F-D-F), and irrigation only for flooding during transplanting and the tillering stage (F-RF). The CH4 and N2O fluxes were measured with the static chamber method. Soil organic carbon (SOC) sequestration rates were estimated based on the changes in the carbon stocks during 1998–2014. Longer periods of soil flooding led to increased CH4 emissions, reduced N2O emissions, and enhanced SOC sequestration. The net GWPs were 22,497, 8,895, and 1,646 kg CO2-equivalent ha−1 yr−1 for the CF, F-D-F, and F-RF, respectively. The annual rice grain yields were comparable between the F-D-F and CF, but were reduced significantly (by 13%) in the F-RF. The GHGIs were 2.07, 0.87, and 0.18 kg CO2-equivalent kg−1 grain yr−1 for the CF, F-D-F, and F-RF, respectively. These results suggest that F-D-F could be used to maintain the grain yields and simultaneously mitigate the climatic impact of double rice-cropping systems.
机译:这项研究提供了与中国双季稻种植系统中的长期水管理实验相关的全球变暖潜能值(GWP)和温室气体强度(GHGI)的完整说明。三种水管理策略包括:连续(全年)洪水(CF),水稻季节的洪水,但在中期和收获期(FDF)期间进行排水,以及仅在移栽和分till期进行灌溉的灌溉(F- RF)。 CH4和N2O通量采用静态室法测量。根据1998-2014年期间碳储量的变化估算了土壤有机碳的固存率。长期的土壤淹水导致CH4排放量增加,N2O排放量减少和SOC隔离增加。 CF,F-D-F和F-RF的净GWP分别为22,497、8,895和1,646 kg二氧化碳当量ha -1 yr -1 。 F-D-F和CF之间的年稻米单产相当,但F-RF中的水稻单产显着降低(降低13%)。 CF,F-D-F和F-RF的GHGI分别为2.07、0.87和0.18 kg二氧化碳当量kg -1 yr -1 。这些结果表明,F-D-F可用于维持谷物产量,同时减轻双季稻种植系统的气候影响。

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