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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Use of the osmotic membrane bioreactor for the management of tannery wastewater using absorption liquid waste as draw solution
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Use of the osmotic membrane bioreactor for the management of tannery wastewater using absorption liquid waste as draw solution

机译:使用渗透膜生物反应器用于使用吸收液体废物作为汲取溶液的制革废水管理

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The performance of an osmotic membrane bioreactor (OMBR) for treating tannery wastewater at laboratory scale has been evaluated in this study. The forward osmosis (FO) membrane tested was CTA-NW from HTI. As draw solution, actual waste water from an absorption column for ammonia separation, which consists mainly of ammonium sulphate was used. The study was focused on the salt reverse flux during the OMBR operation, membrane water flux, biomass characteristics and membrane fouling. Regarding membrane water flux change with the time, the measured values diminished from 3.44 to 0.72 LMH due to the membrane fouling and the salt accumulation in the biological reactor. The stable mixed liquor conductivity value at the end of the experiment was 29.8 mS cm(-1). The chemical oxygen demand (COD) removal efficiencies were maintained near 80% until the first 50 days of operation, considering the soluble COD in the reactor instead of the COD in the membrane permeate for the performance calculation. Thence, COD removal efficiencies decreased progressively due to the accumulation of non degradable COD coming from the tannery wastewater. Concerning to the membrane fouling, FESEM/EDX analysis corroborated that organic fouling was predominant on the membrane active layer. (C) 2019 Published by Elsevier B.V. on behalf of Institution of Chemical Engineers.
机译:本研究评估了在实验室规模治疗制革废水的渗透膜生物反应器(OMBR)的性能。测试的前渗透(Fo)膜是来自HTI的CTA-NW。作为绘制溶液,使用来自吸收塔的实际废水,用于氨分离,主要由硫酸铵组成。该研究专注于OMBR操作期间的盐反向通量,膜水通量,生物质特性和膜污垢。关于膜水通量随时间变化,由于膜污染和生物反应器中的盐积聚,所测量的值从3.44降低至0.72 LMH。实验结束时稳定的混合液电导率值为29.8ms cm(-1)。将化学需氧量(COD)去除效率保持在80%近80%,直到操作的前50天,考虑到反应器中的可溶性鳕鱼而不是膜渗透物中的鳕鱼以进行性能计算。因此,由于来自Tannery废水的不可降解鳕鱼的积累,COD去除效率逐渐减少。关于膜污垢,FESEM / EDX分析证实,有机污垢在膜活性层上占主导地位。 (c)2019年由Elsevier B.V发布。代表化学工程师机构。

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