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Effect of rice plants on CH4 production, transport, oxidation and emission in rice paddy soil

机译:水稻对稻田土壤CH4产生,运输,氧化和排放的影响

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摘要

To understand the integrated effects of rice plants (variety Wuyugeng 2) on CH4 emission during the typical rice growth stage, the production, oxidation and emission of methane related to rice plants were investigated simultaneously through laboratory and greenhouse experiments. CH4 emission was significantly higher from the rice planted treatment than from the unplanted treatment. In the rice planted treatment, CH4 emission was higher at tillering stage than at panicle initiation stage. An average of 36.3% and 54.7% of CH4 produced was oxidized in the rhizosphere at rice tillering stage and panicle initiation stage, respectively, measured by using methyl fluoride (MF) technique. In the meantime, CH4 production in the planted treatments incubated under O2-free N2 condition was reduced by 44.9 and 22.3%, respectively, compared to unplanted treatment. On the contrary, the presence of rice plants strongly stimulated CH4 production by approximately 72.3% at rice ripening stage. CH4 emission through rice plants averaged 95% at the tillering stage and 89% at the panicle initiation stage. Based on these results, conclusions are drawn that higher CH4 emission from the planted treatment than from unplanted treatment could be attributed to the function of rice plants for transporting CH4 from belowground to the atmosphere at tillering and panicle initiation stage, and that a higher CH4 emission at tillering stage than at panicle initiation stage is due to the lower rhizospheric CH4 oxidation and more effective transport mediated by rice plants.
机译:为了解水稻典型生长阶段水稻植株(品种武育庚2号)对CH4 排放的综合影响,通过实验室和温室试验,同时研究了水稻与水稻相关的甲烷的产生,氧化和排放。水稻种植处理的CH4 排放显着高于未种植处理的CH4 。在水稻种植处理中,分till期CH4 的排放高于穗期。水稻分er期和穗萌动期,根际平均产生的CH4 被氧化的比例分别为36.3%和54.7%。同时,与未种植的处理相比,在无O2的N2条件下培养的种植处理中的CH4产生分别减少了44.9%和22.3%。相反,稻米植物的存在在稻米成熟阶段强烈刺激了CH4 的产生,其产量约为72.3%。水稻分stage期甲烷排放量平均为95%,而穗期则为89%。根据这些结果,得出的结论是,种植处理产生的CH4 排放量高于未种植处理产生的CH4 排放量,可以归因于水稻在分er和穗开始时将CH4 从地下转运到大气的功能分er期CH4 的排放高于穗期,这是由于根际CH4 的氧化程度较低,以及水稻介导的更有效的转运。

著录项

  • 来源
    《Plant and Soil》 |2001年第2期|211-221|共11页
  • 作者单位

    Laboratory of Material Cycling in Pedosphere Institute of Soil Science Chinese Academy of Sciences;

    Laboratory of Material Cycling in Pedosphere Institute of Soil Science Chinese Academy of Sciences;

    Laboratory of Material Cycling in Pedosphere Institute of Soil Science Chinese Academy of Sciences;

    Laboratory of Material Cycling in Pedosphere Institute of Soil Science Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    methane emission; MF technique; plant effect;

    机译:甲烷排放;MF技术;植物效应;

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