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Demethanization of aqueous anaerobic effluents using a polydimethylsiloxane membrane module: Mass transfer, fouling and energy analysis

机译:使用聚二甲基硅氧烷膜组件去甲烷化厌氧流出物:传质,污垢和能量分析

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The performance, fouling and feasibility of a polydimethylsiloxane hollow fibre membrane module for in situ methane degasification from the effluent of an Expanded Granular Sludge Bed anaerobic reactor has been investigated. Experiments at different operational conditions were carried out (liquid flow, sweep gas flow and vacuum pressure) with maximum removal efficiency (77%) at lowest flow-rate (0.4 L h(-1)), highest vacuum gauge pressure (-800 mbar) and liquid flowing in lumen side. Mass transport analysis denoted a considerably higher methane transfer than that predicted (attributed to liquid over-saturation). An enhancement factor for liquid phase has been proposed to correlate the experimental results. Long-term experiments were also performed in order to determine the possible influence of fouling on the module performance, and it showed that relatively frequent cleaning with water might be carried out to ensure preservation of the membrane efficiency. Characterization of water quality before and after membrane module was carried out to elucidate fouling causes. Energy balance analysis evidenced that energy production exceeded the system energy requirements. A substantial reduction of CO2 equivalent emissions showed the positive environmental impact of this technology. (C) 2017 Elsevier B.V. All rights reserved.
机译:研究了来自膨胀粒状污泥床流出物的原位甲烷中空纤维膜组件的聚二甲基硅氧烷中空纤维纤维膜组件的性能,污垢和可行性。在不同操作条件下进行(液体流动,扫描气体流动和真空压力)的实验,最大的去除效率(77%),最低流速(0.4L H(-1)),真空测量压力最高(-800毫巴) )在腔侧流动的液体。大规模转运分析表示比预测的相当高的甲烷转移(归因于液体过度饱和)。已经提出了液相增强因子来关联实验结果。还进行了长期实验,以便确定污垢对模块性能的可能影响,并且它表明可能进行水合频繁清洁,以确保保存膜效率。进行膜组件前后水质的表征,以阐明污染原因。能量平衡分析证明了能源产量超出了系统能源要求。二氧化碳等效排放的大幅减少表明了这项技术的积极环境影响。 (c)2017 Elsevier B.v.保留所有权利。

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