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Seasonal changes of methane emission on black soil rice field in cold region and its DNDC simulation

机译:寒冷地区黑土稻田甲烷排放量的季节变化及其DNDC模拟

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摘要

Methane (CH_4) emission from black soil rice field has obvious contribution on the greenhouse effect, however, scare investigations was done on the valuable issue. Static chamber method with DNDC simulation is a novel method to study greenhouse gases in rice field. The seasonal changes of methane emission were studied and simulated in a controlled and flooding irrigation by means of field-fixed position test. The results showed that irrigation patterns of methane emission peak has obvious difference, and total methane emission amount in growing season in controlled irrigation mode was about 47%, which was lower than that in flooding irrigation mode. The verification result showed the DNDC model may well describe the methane emission of black soil rice field in cold region. Therefore, controlled irrigation is an effective irrigation mode in reducing CH_4 emission from rice field and the DNDC model may be a powerful tool for assessing CH_4 emission quantities of black soil rice fields in cold region.
机译:黑土稻田甲烷(CH_4)的排放对温室效应有明显贡献,但对此有价值的问题进行了深入研究。带有DNDC模拟的静态室法是研究稻田温室气体的一种新方法。通过田间固定位置试验,研究了甲烷的季节性变化规律,并在控制性灌溉和洪水灌溉中进行了模拟。结果表明,甲烷排放峰的灌溉方式存在明显差异,控制灌溉模式下生长季的甲烷排放总量约为47%,低于淹水灌溉模式。验证结果表明,DNDC模型可以很好地描述寒冷地区黑土稻田的甲烷排放。因此,控制灌溉是减少稻田CH_4排放的有效灌溉方式,而DNDC模型可能是评估寒冷地区黑土稻田CH_4排放量的有力工具。

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