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Assessment of the methane oxidation capacity of soil

机译:土壤甲烷氧化能力评估

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Methane oxidation capacity of three soil matrices was assessed using a new method based on the pressure fall resulting from methane oxidation, The effects of incubation temperature, moisture and methane content on the oxidation capacity were studied. Parameters observed were non-methanotrophic oxygen consumption, methane assimilation, length of the lag period before steady pressure fall was reached, initial pressure fall and maximum pressure fall. Filling material taken from a biofilter was tested. The length of the lag period was an index of prior exposure of the soil to methane emissions. Incubation temperature of 30 deg C and soil moisture at the water-holding capacity were chosen to standardize the test. Oxygen depletion by non-methanotrophs varied between 40 and 60 percent of the total oxygen consumption while methane assimilation was at 40 to 50 percent of the total methane consumption.
机译:根据甲烷氧化引起的压降,采用一种新的方法对三种土壤基质的甲烷氧化能力进行了评估,研究了温度,湿度和甲烷含量对甲烷氧化能力的影响。观察到的参数是非甲烷营养氧消耗量,甲烷吸收,达到稳定压力下降之前的滞后时间长度,初始压力下降和最大压力下降。测试了从生物过滤器中取出的填充材料。滞后期的长度是土壤事先接触甲烷排放的指标。选择30℃的培养温度和保水能力下的土壤湿度来标准化测试。非甲烷营养菌的耗氧量占总耗氧量的40%至60%,而甲烷同化占总耗氧量的40%至50%。

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