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首页> 外文期刊>Soil Biology & Biochemistry >Decreasing of methanogenic activity in paddy fields via lowering ponding water temperature: A modeling investigation
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Decreasing of methanogenic activity in paddy fields via lowering ponding water temperature: A modeling investigation

机译:通过降低积水温度降低稻田产甲烷活性:一个模型研究

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摘要

Methane (CH4) is a potent greenhouse gas and the huge CH4 fluxes emitted from paddy fields can prejudice the eco-compatibility of rice cultivation. CH4 production in submerged rice crops is known to be highly influenced by water temperature. Hence, lowering ponding water temperature (LPWT) could be an option to mitigate CH4 emissions from paddy environments when it is possible either to irrigate with slightly colder water or to increase ponding water depth. However, paddy soil is a complex environment in which many processes are simultaneously influenced by temperature, leading to a difficult prediction of LPWT effects. For this reason, LPWT efficiency is here theoretically investigated with a one-dimensional process-based model that simulates the vertical and temporal dynamics of water temperature in soil and the fate of chemical compounds that influence CH4 emissions. The model is validated with literature measured data of CH4 emissions from a paddy field under time-variable temperature regime. Based on modeling results, LPWT appears promising since the simulated reduction of CH4 emissions reaches about -12% and -49% for an LPWT equal to -5 degrees C during the ripening stage only (last 30 days of growing season, when rice is less sensitive to temperature variations) and -2 degrees C over the whole growing season, respectively. LPWT affects CH4 emissions either directly (decreasing methanogenic activity), indirectly (decreasing activity of bacteria using alternative electron acceptors), or both. The encouraging results provide the theoretical ground for further laboratory and field studies aimed to investigate the LPWT feasibility in paddy environments
机译:甲烷(CH4)是一种强大的温室气体,稻田排放的大量CH4通量会损害水稻种植的生态适应性。众所周知,淹水稻谷中甲烷的产生会受到水温的高度影响。因此,降低池塘水温(LPWT)可能是减轻稻田环境中CH4排放的一种选择,可能的话是用稍冷的水灌溉或增加池塘水深。然而,稻田土壤是一个复杂的环境,其中许多过程同时受到温度的影响,导致难以预测LPWT效应。因此,在理论上使用一维基于过程的模型来研究LPWT效率,该模型模拟土壤中水温的垂直和时间动态以及影响CH4排放的化学化合物的命运。在时变温度条件下,用稻田CH4排放的文献测得的数据对模型进行了验证。根据建模结果,LPWT看起来很有希望,因为仅在成熟阶段(生长季节的最后30天,当水稻较少时),对于等于-5摄氏度的LPWT,CH4排放的模拟减少量达到约-12%和-49%。在整个生长季节对温度变化敏感)和-2摄氏度。 LPWT直接(减少产甲烷活性),间接(使用替代电子受体减少细菌活性)或同时影响CH4排放。令人鼓舞的结果为进一步的实验室和田间研究提供了理论依据,旨在研究稻田中LPWT的可行性

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