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A high-efficiency magnetic activated sludge reactor for wastewater processing

机译:用于废水加工的高效磁性活性污泥反应器

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Technologies for the recycling of water are a primary goal of NASA's advanced life support programs. Biological processes have been identified as an attractive method for wastewater processing. A fundamental new bioreactor based on a traditional activated sludge process is demonstrated that treats hygiene wastewater using magnetic iron oxide particles agglomerated with microbial cells. In this bioreactor, microbes are suspended in magnetic flocs in a wastewater medium. Instead of a traditional gravity separator used in activated sludge operations, a magnetic separator removes the microbial flocs from the outlet stream. The reactor separation operates continuously, independent of gravitational influences. The reactor has been able to simultaneously remove 98% of high levels of both nitrogenous and organic carbon impurities from the wastewater as well as achieve acceptably low levels of total suspended solids. This reactor provides size and weight advantages and potentially can eliminate many difficulties of using bioreactors in regenerative life support systems in space.
机译:水资源的技术是美国宇航局的先进生活支持计划的主要目标。已鉴定生物过程作为废水加工的吸引方法。基于传统活性污泥工艺的基本新生物反应器经证明了使用用微生物细胞凝聚的磁性氧化铁颗粒处理卫生废水。在这种生物反应器中,微生物悬浮在废水介质中的磁性絮凝物中。代替在活性污泥操作中使用的传统重力分离器,磁分离器从出口流中除去微生物絮状物。反应器分离连续运行,与重力影响无关。反应器能够从废水中同时去除98%的高水平含氮和有机碳杂质,也可以达到可接受的低水平的总悬浮固体。该反应器提供尺寸和重量优势,并且可能会消除在空间中使用再生寿命支持系统中的生物反应器的许多困难。

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