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The Economic Value of Gas Exchange in a Paddy Field Ecosystem Using Water-Saving Irrigation

机译:节水灌溉在稻田生态系统中气体交换的经济价值

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The ecosystem services value of paddy fields has received increasing attention in agricultural policy decisions. This paper presents the first study to investigate the effects of rice water-saving irrigation on the economic value of gas exchange in a paddy field ecosystem based on a field experiment. The results showed that, compared to traditional flooding irrigation (FI), controlled irrigation (CI) decreased irrigation water input while maintaining high rice yield. Irrigation methods showed no significant influence on O-2 production and its value in paddy fields. CI significantly reduced CH4 emissions and its negative economic value by 81.80%, but increased N2O by 136.86%. The economic value of CO2 uptake far outweighed the absolute value of negative economic values caused by CH4 and N2O emissions. Therefore, the irrigation methods showed no significant difference in economic value caused by greenhouse gas emissions (GHGs) from rice paddies. CI management significantly decreased ammonia volatilization (AV) and its economic value by 19.56%. Overall, CI increased economic value of gas exchange (O-2 production, GHGs emission, and AV) by 8.96% compared to FI paddies. Our results suggest that CI significantly increased the economic value of gas exchange in a paddy field ecosystem while drastically reducing irrigation water input and ensuring rice yields.
机译:稻田的生态系统服务价值在农业政策决策中越来越受到重视。本文基于田间试验,首次研究了水稻节水灌溉对稻田生态系统中气体交换的经济价值的影响。结果表明,与传统的洪水灌溉(FI)相比,控制灌溉(CI)在保持高水稻产量的同时减少了灌溉水的输入。灌溉方法对稻田中O-2的产生及其价值没有显着影响。 CI可显着减少CH4排放量及其负经济价值81.80%,但增加N2O 136.86%。吸收二氧化碳的经济价值远远超过了因甲烷和一氧化二氮排放造成的负经济价值的绝对值。因此,灌溉方法没有显示出稻田温室气体排放(GHG)引起的经济价值差异。 CI管理显着降低了氨挥发(AV)及其经济价值,降低了19.56%。总体而言,与FI稻田相比,CI的气体交换(O-2生产,GHG排放和AV)的经济价值提高了8.96%。我们的结果表明,CI显着提高了稻田生态系统中气体交换的经济价值,同时大大减少了灌溉水的投入并确保了稻米的产量。

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