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首页> 外文期刊>Chemistry and Ecology >Effects of nitrogen and sulphate addition on methane oxidation in the marsh soil of a typical subtropical estuary (Min River) in China
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Effects of nitrogen and sulphate addition on methane oxidation in the marsh soil of a typical subtropical estuary (Min River) in China

机译:氮气和硫酸盐添加对我国典型亚热带河口(Min River)沼泽土壤中甲烷氧化的影响

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摘要

Methane (CH4) oxidation plays an important role in regulating the atmospheric CH4 balance. Although nitrogen (N) enhancement and sulphate deposition are major environmental problems facing the Min River estuary in subtropical China, the interactive effects of N and on CH4 oxidation remain poorly understood. We conducted an incubation experiment to investigate the effects of N and additions on CH4 oxidation in marsh soils. CH4 oxidation exhibited distinct seasonal variations, which correlated with changes in temperature and soil moisture; in addition, CH4 oxidation rates were enhanced by the addition of nitrate but were slightly inhibited by the addition of ammonium nd. The combined effects of N and on CH4 oxidation were controlled primarily by the form of N, which may imply that inhibition of CH4 oxidation with may be counteracted by N addition, especially in estuarine marsh soils with low N and high . We propose that, although was more effective in stimulating CH4 oxidation and the inhibition caused by and was minor, CH4 oxidation may be inhibited because was dominant and accompanied by strong deposition in the Min River estuary. As such, future CH4 emissions from estuarine wetlands may increase as a result of higher inputs of NH4+ and SO42-.
机译:甲烷(CH4)氧化在调节大气CH4平衡方面发挥着重要作用。虽然氮(N)增强和硫酸盐沉积是亚热带河流河口的主要环境问题,但亚热带河口中的闽河河口,N和CH4氧化的互动效果仍然明显。我们进行了培养实验,以研究N的疗效对沼泽土壤中的CH4氧化。 CH4氧化表现出不同的季节变异,与温度和土壤水分的变化相关;另外,通过加入硝酸盐来增强CH 4氧化速率,但通过加入铵Nd略微抑制。 N和CH4氧化的组合效果主要是通过N的形式控制,这可能意味着CH4氧化的抑制可以通过N添加可以抵消,特别是在低N和高的乙碱沼泽土壤中。我们提出,尽管在刺激CH 4氧化方面更有效,但可能抑制了抑制且次要的抑制作用,因为可能是显性的,并且伴随着Min River河口中的强烈沉积。因此,由于NH4 +和SO42的更高输入,河口湿地的未来CH4排放可能增加。

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