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Selection of forward osmosis draw solutes for subsequent integration with anaerobic treatment to facilitate resource recovery from wastewater

机译:选择正渗透会吸收溶质,以便随后与厌氧处理相结合,以促进废水中资源的回收

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Forward osmosis (FO) can be used to extract clean water and pre-concentrate municipal wastewater to make it amenable to anaerobic treatment. A protocol was developed to assess the suitability of FO draw solutes for pre-concentrating wastewater for potential integration with anaerobic treatment to facilitate resource recovery from wastewater. Draw solutes were evaluated in terms of their ability to induce osmotic pressure, water flux, and reverse solute flux. The compatibility of each draw solute with subsequent anaerobic treatment was assessed by biomethane potential analysis. The effect of each draw solute (at concentrations corresponding to the reverse solute flux at ten-fold pre-concentration of wastewater) on methane production was also evaluated. The results show that ionic organic draw solutes (e. g., sodium acetate) were most suitable for FO application and subsequent anaerobic treatment. On the other hand, the reverse solute flux of inorganic draw solutions could inhibit methane production from FO pre-concentrated wastewater. Crown Copyright (C) 2015 Published by Elsevier Ltd. All rights reserved.
机译:正向渗透(FO)可用于提取清洁水并预浓缩市政废水,使其适合厌氧处理。制定了协议以评估FO抽提溶质对预浓缩废水的适用性,以便与厌氧处理进行潜在的整合,以促进废水中资源的回收。根据吸引溶质诱导渗透压,水通量和反向溶质通量的能力进行了评估。通过生物甲烷电势分析评估每种抽提溶质与后续厌氧处理的相容性。还评估了每种抽取溶质(对应于废水预浓缩10倍时反向溶质通量的浓度)对甲烷产生的影响。结果表明,离子有机吸引溶质(例如乙酸钠)最适合于FO施用和随后的厌氧处理。另一方面,无机汲取溶液的反向溶质通量可以抑制FO预浓缩废水中的甲烷产生。 Crown版权所有(C)2015,由Elsevier Ltd.发行。保留所有权利。

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