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首页> 外文期刊>Journal of Environmental Engineering >Aerobic Methane Oxidation Coupled to Denitrification: Kinetics and Effect of Oxygen Supply
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Aerobic Methane Oxidation Coupled to Denitrification: Kinetics and Effect of Oxygen Supply

机译:有氧甲烷氧化与反硝化耦合:动力学和供氧的影响

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Aerobic methane oxidation coupled to denitrification AME-D is a process in which aerobic methanotrophs oxidize methane and release organic compounds that are used by coexisting denitrifiers as electron donors for denitrification. This process is potentially promising for denitrification of wastewater or landfill leachate poor in organic carbon using methane produced onsite as external electron donor. We studied the kinetics of an aerobic methane-oxidizing denitrifying culture and investigated the effect of dissolved oxygen DO oncentration and air supply rate on AME-D using a batch reactor and a semicontinuous reactor setup. At methane concentrations of 18–33% in air and air flow rates of 15–35 mL air L-1 liquid min-1, the DO concentration was less than 0.01 mg L-1 and the nitrate removal reached a maximum value of 56.7 mg NO3–N g-1 VSS d-1 with 79% being attributed to denitrification. When the air supply rate was increased to 70 mL air L-1 liquid min-1 resulting in a drop in methane content to 10%, the DO concentration in the bioreactor rose to about 0.8–1.0 mg L-1 and the total nitrate removal dropped to about 10 mg NO3–N g-1 VSS d-1 with none of it being attributed to denitrification.
机译:与反硝化耦合的好氧甲烷氧化AME-D是好氧甲烷氧化菌氧化甲烷并释放有机化合物的过程,该有机化合物被共存的反硝化剂用作反硝化的电子供体。使用现场产生的甲烷作为外部电子给体,该工艺有望对有机碳含量低的废水或垃圾渗滤液进行反硝化。我们研究了好氧甲烷氧化反硝化培养的动力学,并使用分批反应器和半连续反应器设置研究了溶解氧DO浓度和空气供应速率对AME-D的影响。在空气中甲烷浓度为18–33%且空气流速为15–35 mL空气L-1液体min-1时,DO浓度小于0.01 mg L-1,硝酸盐去除量达到最大值56.7 mg NO3-N g-1 VSS d-1,其中79%归因于反硝化作用。当空气供应速率增加至70 mL空气L-1液体min-1导致甲烷含量降至10%时,生物反应器中的DO浓度升至约0.8–1.0 mg L-1,并且总硝酸盐去除量下降至约10 mg NO3-N g-1 VSS d-1,没有一个原因是反硝化作用。

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