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International Society for Environmental Information Sciences 2010 Annual Conference (ISEIS) The effect of cultivation methods on enhancing the methane oxidation capacity of ceramsite

机译:国际环境信息科学协会2010年度会议(ISEIS)培养方法对增强陶瓷矿石甲烷氧化能力的影响

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Inoculated with compost from methane oxidation habitats, the differences of methane oxidation capacity were compared and investigated after suspended-growth process and attached-growth process. The result showed that the ceramsite-compost matrix was formed in short time (3d) under the suspended growth condition and its methane oxidation capacity increased remarkably. The peak methane oxidation rate was 52.7g CH4·m~(-3)·h~(-1) after suspended-growth process. However, the methane oxidation capacity of ceramsite was lower after attached-growth process with the peak methane oxidation rate of 13.5 gCH4·m~(-3)·h~(-1).
机译:从甲烷氧化栖息地接种堆肥,比较甲烷氧化能力的差异,并在悬浮生长过程和附着生长过程后研究。结果表明,在悬浮生长条件下的短时间(3D)中形成了Ceramsite-COPOST基质,其甲烷氧化能力显着增加。悬浮生长过程后,钠甲烷氧化速率为52.7g CH4·m〜(-3)·h〜(-1)。然而,在连接生长过程后,Ceramsite的甲烷氧化能力较低,钠甲烷氧化率为13.5gCH4·m〜(-3)H〜(-1)。

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