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Semi-continuous operation and fouling characteristics of submerged membrane photobioreactor (SMPBR) for tertiary treatment of livestock wastewater

机译:半连续操作和淹没膜光生物反应器(SMPBR)在三级处理畜禽污水时的结垢特性

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A submerged membrane photobioreactor was tested to provide a feasible means to conduct tertiary treatment of livestock wastewater. In this study, three phases of a semi-continuous photobioreactor were tested based on hydraulic retention time to evaluate biomass productivity, effluent quality, and fouling characteristics of the membrane module. The results show that the membrane module contributes to securing effluent quality with high nitrogen (36%) and phosphorus (25%) daily removal rates. Shorter hydraulic retention time resulted in better performance for removal of nitrogen and phosphorus; a 3 d hydraulic retention time resulted in 96% (nitrogen), and 85% (phosphorus) removal. Under the proposed condition, the biomass concentration simultaneously increased to 3500 mg/L (dry weight). Active photosynthesis in the photobioreactor was strongly associated with the average concentrations of soluble microbial products (carbohydrate: 84.5 mg/L, protein: 37.9 mg/L) and extracellular polymeric substances (carbohydrate: 44.1 mg/L, protein: 556.9 mg/L). Relatively high carbohydrate concentrations in the permeate provided evidence of a strong relationship between the effluent quality and carbohydrates in the soluble microbial products. Morphological and chemical analyses proved that micro-algal membrane fouling is attributable to soluble microbial products and/or extracellular polymeric substances. These occur in significant amounts after 10 d, indicating an unavoidable need for biomass harvesting. This study provides an understanding of the fouling trend according to varying hydraulic retention time and, biomass harvesting, and offers a viable operation strategy for use of a submerged membrane photobioreactor to convert pollutants into useful bioresources and improve effluent quality. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对淹没膜光生物反应器进行了测试,以提供一种可行的方法来对牲畜废水进行三级处理。在这项研究中,基于水力停留时间测试了半连续光生物反应器的三个阶段,以评估生物质生产率,出水质量和膜组件的结垢特性。结果表明,膜组件有助于确保废水的质量,每天的氮去除率高达36%,磷去除率高达25%。较短的水力停留时间导致更好的除氮和除磷性能; 3 d的水力停留时间导致96%(氮)和85%(磷)的去除。在建议的条件下,生物质浓度同时增加到3500 mg / L(干重)。光生物反应器中的活跃光合作用与可溶性微生物产物(碳水化合物:84.5 mg / L,蛋白质:37.9 mg / L)和细胞外聚合物质(碳水化合物:44.1 mg / L,蛋白质:556.9 mg / L)的平均浓度密切相关。 。渗透物中相对较高的碳水化合物浓度提供了废水质量与可溶性微生物产品中碳水化合物之间密切关系的证据。形态和化学分析证明,微藻膜结垢可归因于可溶性微生物产物和/或细胞外聚合物。这些在10 d后大量发生,表明不可避免地需要生物质收获。这项研究提供了根据不同的水力停留时间和生物质收获的结垢趋势的理解,并为使用浸没式膜光生物反应器将污染物转化为有用的生物资源并提高废水质量提供了可行的操作策略。 (C)2018 Elsevier Ltd.保留所有权利。

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