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首页> 外文期刊>Biology and Fertility of Soils >Nitrous oxide and methane emissions during rice growth and through rice plants: effect of dicyandiamide and hydroquinone
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Nitrous oxide and methane emissions during rice growth and through rice plants: effect of dicyandiamide and hydroquinone

机译:水稻生长期间和通过水稻植株排放的一氧化二氮和甲烷:双氰胺和对苯二酚的影响

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摘要

There is growing interest in N2O and CH4 transport through rice plants, but very little information is available on the effects of inhibitors on these gaseous emissions during rice growth and through rice plants. The closed chamber technique was used to study the effect of the urease inhibitor hydroquinone (HQ) and the nitrification inhibitor dicyandiamide (DCD) on N2O and CH4 emissions. As rice plants grew, the N2O emission through rice plants was significantly reduced in all treatments; N2O emissions were always lower in the presence than in the absence of inhibitor(s). These variations paralleled those in NO3 –-N content of fresh rice plants. During the rice growth period, increasing NO3 –-N content in rice plants paralleled the increase in the N2O emission through rice plants. Hence, NO3 –-N in young rice plants can substantially contribute to the plant-mediated N2O flux. A substantial CH4 emission through rice plants occurred at their vigorous growth stage; CH4 emissions were always lower in the presence than in the absence of inhibitor(s). Under the experimental conditions, application of DCD, especially of DCD+HQ, could significantly improve the growth of rice, and reduce the emissions of N2O and CH4 during rice growth.
机译:人们对通过稻田运输N2 O和CH4 的兴趣日益浓厚,但是关于抑制剂对水稻生长和稻田中这些气体排放的影响的信息很少。采用密闭室技术研究了脲酶抑制剂对苯二酚(HQ)和硝化抑制剂双氰胺(DCD)对N2O和CH4排放的影响。随着水稻植物的生长,在所有处理中,通过水稻植物排放的N2 O均显着减少;有抑制剂的情况下,N2O的排放总是比没有抑制剂的情况下低。这些变化与新鲜水稻植株中NO3 -N含量的变化相似。在水稻生育期,水稻中NO3 -N含量的增加与水稻中N2 O的排放量增加呈平行关系。因此,年轻水稻植株中的NO3 -N可以显着促进植物介导的N2 O通量。水稻在旺盛的生长阶段大量排放CH4 。存在下的CH4 排放总是比不存在抑制剂的情况下更低。在实验条件下,施用DCD,尤其是DCD + HQ,可以显着改善水稻的生长,并减少水稻生长过程中N2O和CH4的排放。

著录项

  • 来源
    《Biology and Fertility of Soils》 |2002年第1期|53-58|共6页
  • 作者单位

    State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry Institute of Atmospheric Physics Chinese Academy of Sciences Beijing 100029 People's Republic of China;

    Laboratory of Applied Physical Chemistry Faculty of Agricultural and Applied Biological Sciences University of Ghent 9000 Gent Belgium;

    State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry Institute of Atmospheric Physics Chinese Academy of Sciences Beijing 100029 People's Republic of China;

    State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry Institute of Atmospheric Physics Chinese Academy of Sciences Beijing 100029 People's Republic of China;

    State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry Institute of Atmospheric Physics Chinese Academy of Sciences Beijing 100029 People's Republic of China;

    State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry Institute of Atmospheric Physics Chinese Academy of Sciences Beijing 100029 People's Republic of China;

    Laboratory of Applied Physical Chemistry Faculty of Agricultural and Applied Biological Sciences University of Ghent 9000 Gent Belgium;

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

    Dicyandiamide Hydroquinone Methane Nitrous oxide Urea;

    机译:双氰胺对苯二酚甲烷一氧化二氮尿素;

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