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首页> 外文期刊>Soil Biology & Biochemistry >The inhibitory effect of difluoromethane on CH4 oxidation in reconstructed peat columns and side-effects on CO2 and N2O emissions at two water levels
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The inhibitory effect of difluoromethane on CH4 oxidation in reconstructed peat columns and side-effects on CO2 and N2O emissions at two water levels

机译:二氟甲烷对重建泥炭柱中CH4氧化的抑制作用以及在两个水位下对CO2和N2O排放的副作用

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摘要

Methane emissions from soils are the net result of two processes: methane (CH4) production and CH4 oxidation. In order to understand how both processes respond to environmental changes, it is necessary to distinguish between CH4 production and oxidation. In bacterial cultures and small soil samples, difluoromethane (CH2F2) was found to inhibit CH4 oxidation reversibly, without affecting CH4 production. Hence, CH2F2 allows the study of CH4 production directly and of CH4 oxidation indirectly. To our knowledge, however, the inhibitory effect of CH2F2 within soil columns has not yet been evaluated. We therefore tested which CH2F2 concentration is needed for complete inhibition of CH4 oxidation in reconstructed 28 cm high peat soil columns under different water levels (WL). We found that soil columns require considerably higher headspace CH2F2 concentrations for complete inhibition of CH4 oxidation than small soil samples. Inhibition remained complete until ca. 24 h after CH2F2 exposure. Then, the inhibitory effect diminished. The time needed for the inhibitory effect to disappear depended on WL; at a low WL of -15 cm, the inhibitory effect declined slowly and oxidation rates recovered by 90% only after 12 days. At WL = -5 cm, CH4 oxidation recovered much faster (90% recovery after ca. 3 days). Last, CH2F2 addition significantly decreased the N2O emissions, whereas CO2 emissions remained unaltered.
机译:土壤甲烷排放是两个过程的净结果:甲烷(CH4)的生产和CH4的氧化。为了了解这两个过程如何响应环境变化,有必要区分CH4的​​产生和氧化。在细菌培养物和少量土壤样品中,发现二氟甲烷(CH2F2)可逆地抑制CH4氧化,而不影响CH4的产生。因此,CH2F2可以直接研究CH4的产生,间接研究CH4的氧化。据我们所知,尚未评估CH2F2在土壤柱中的抑制作用。因此,我们测试了在不同水位(WL)下完全重构的28 cm高泥炭土柱中,要完全抑制CH4氧化所需的CH2F2浓度。我们发现,土壤柱需要比完全土壤样品高得多的顶空CH2F2浓度才能完全抑制CH4氧化。抑制作用保持完全直至约。 CH2F2暴露后24小时。然后,抑制作用减弱。抑制作用消失所需的时间取决于WL。在-15 cm的低WL下,抑制作用缓慢下降,仅在12天后氧化率恢复了90%。在WL = -5 cm处,CH4氧化恢复得更快(约3天后恢复90%)。最后,CH2F2的添加显着减少了N2O排放,而CO2排放保持不变。

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