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Feasibility of anaerobic membrane bioreactors (AnMBR) for onsite sanitation and resource recovery (nutrients, energy and water) in urban slums

机译:厌氧膜生物反应器(AnMBR)用于城市贫民窟现场卫生和资源回收(营养,能源和水)的可行性

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摘要

Slums are challenging locations for sanitation technologies. High population densities, a lack of water and electricity infrastructure, and space constraints combine to ensure that many traditional waste treatment technologies fail when implemented in this context. This paper proposes the use of anaerobic membrane bioreactors (AnMBRs) for slum sanitation. AnMBRs allow for localized water reuse, high quality treatment, and energy production at the point of treatment. A water, energy, nutrient, and mass balance was conducted on a theoretical AnMBR directly coupled to a public toilet. The combined system would be capable of recycling its water for use in toilet flushing and would be capable of providing enough energy to power both the toilet and AnMBR operation. The addition of food waste to the feed would help to ensure process stability and energy production by the AnMBR. Ammonia accumulation within the system would have to be managed through struvite precipitation, ion exchange, oxidation, plant uptake or other means. Generated biogas can be converted into heat and/or electricity using small scale gas generators. AnMBR technology has high potential for success in slum settings, if considerations for maintenance and supplies are made as part of the design and system delivery.
机译:贫民窟对卫生技术构成挑战。高人口密度,缺乏水和电基础设施以及空间限制共同确保了许多传统的废物处理技术在这种情况下实施时都会失败。本文提出了厌氧膜生物反应器(AnMBRs)用于贫民窟卫生的用途。 AnMBR允许在处理点进行局部水回用,高质量处理和产生能量。在理论上与公共厕所直接相连的AnMBR上进行了水,能量,营养和质量的平衡。该组合系统将能够回收其水以用于马桶冲洗,并且将能够提供足够的能量来为马桶和AnMBR操作提供动力。在饲料中添加食物垃圾将有助于确保AnMBR的工艺稳定性和能源生产。系统中氨的积累必须通过鸟粪石沉淀,离子交换,氧化,植物吸收或其他方式进行管理。产生的沼气可以使用小型气体发生器转化为热和/或电。如果在设计和系统交付过程中考虑到维护和供应,AnMBR技术在贫民窟环境中具有成功的巨大潜力。

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