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A membrane biofilm reactor achieves aerobic methane oxidation coupled to denitrification (AME-D) with high efficiency

机译:膜生物膜反应器可实现需氧甲烷氧化与脱氮(AME-D)的高效耦合

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摘要

Methane would potentially be an inexpensive, widely available electron donor for denitrification of wastewaters poor in organics. Currently, no methanotrophic microbe is known to denitrify. However, aerobic methane oxidation coupled to denitrification (AME-D) has been observed in several laboratory studies. In the AME-D process, aerobic methanotrophs oxidise methane and release organic metabolites and lysis products, which are used by coexisting denitrifiers as electron donors for denitrification. Due to the presence of oxygen, the denitrification efficiency in terms of methane-to-nitrate consumption is usually low. To improve this efficiency the use of a membrane biofilm reactor was investigated. The denitrification efficiency of an AME-D culture in (1) a suspended growth reactor, and (2) a membrane biofilm reactor was studied. The methane-to-nitrate consumption ratio for the suspended culture was 8.7. For the membrane-attached culture the ratio was 2.2. The results clearly indicated that the membrane-attached biofilm was superior to the suspended culture in terms of denitrification efficiency. This study showed that for practical application of the AME-D process, focus should be placed on development of a biofilm reactor.
机译:甲烷可能是一种廉价的,广泛使用的电子供体,可用于对有机物含量低的废水进行反硝化。目前,尚无甲烷营养型微生物反硝化。但是,在一些实验室研究中已观察到需氧甲烷氧化与反硝化(AME-D)耦合。在AME-D工艺中,好氧甲烷氧化菌氧化甲烷并释放有机代谢物和裂解产物,反硝化剂共存用作反硝化的电子给体。由于氧气的存在,从甲烷到硝酸盐的消耗方面,反硝化效率通常很低。为了提高该效率,研究了膜生物膜反应器的使用。研究了(1)悬浮生长反应器和(2)膜生物膜反应器中AME-D培养物的反硝化效率。悬浮培养物中甲烷与硝酸盐的消耗比为8.7。对于膜附着培养物,该比率为2.2。结果清楚地表明,就反硝化效率而言,附有膜的生物膜优于悬浮培养物。这项研究表明,对于AME-D工艺的实际应用,应将重点放在生物膜反应器的开发上。

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