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首页> 外文期刊>Global change biology >Elevated ozone reduces methane emissions from peatland mesocosms
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Elevated ozone reduces methane emissions from peatland mesocosms

机译:较高的臭氧水平减少了泥炭地生物膜的甲烷排放

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Although the effects of elevated ozone on aboveground carbon (C) assimilation are well understood, its effects on soil C fluxes are less certain. Mesocosms taken from a lowland raised bog in northern England were exposed in open-top chambers for 2 years to ambient air or ambient air plus ozone elevated for 8 h day-1 by an average of 49 ppb in summer and 10 ppb in winter. The effects of elevated ozone on methane emission and ecosystem dark respiration were measured throughout this period, along with soil and plant variables. Methane emissions were significantly reduced, by about 25%, by elevated ozone during midsummer periods of both years, but no significant effect of ozone was found during the winter periods. Dark ecosystem respiration was not significantly affected by elevated ozone. There was no evidence that effects of elevated ozone on methane emissions were mediated through changes in aboveground plant biomass or soil water dissolved organic C concentrations. Our results imply that the increased northern hemisphere background ozone concentrations over the 21st century that are predicted by most models may reduce the rate of increase in methane emissions as the region warms.
机译:尽管人们已经了解了臭氧升高对地上碳(C)同化的影响,但它对土壤C通量的影响尚不确定。从英格兰北部的一个低地沼泽中抽出的中观在敞开的舱室中暴露了2年,暴露于环境空气或环境空气中,并在臭氧中持续了8天(第一天),夏季平均升高了49 ppb,冬季平均升高了10 ppb。在此期间测量了臭氧浓度升高对甲烷排放和生态系统暗呼吸的影响,以及土壤和植物的变量。在这两年的仲夏期间,臭氧浓度的升高使甲烷的排放量显着减少了约25%,但在冬季没有发现臭氧的显着影响。臭氧浓度升高并未明显影响黑暗的生态系统呼吸。没有证据表明臭氧升高对甲烷排放的影响是通过地上植物生物量或土壤水中溶解的有机碳浓度的变化介导的。我们的结果表明,大多数模型预测的21世纪北半球本底臭氧浓度的增加可能会随着该地区变暖而降低甲烷排放量的增长率。

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