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Advanced treatment of biologically pretreated coal gasification wastewater by a novel integration of catalytic ultrasound oxidation and membrane bioreactor

机译:催化超声氧化和膜生物反应器的新型集成对生物预处理的煤气化废水进行深度处理

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摘要

Laboratorial scale experiments were conducted to investigate a novel system integrating catalytic ultrasound oxidation (CUO) with membrane bioreactor (CUO-MBR) on advanced treatment of biologically pretreated coal gasification wastewater. Results indicated that CUO with catalyst of FeOx/SBAC (sewage sludge based activated carbon (SBAC) which loaded Fe oxides) represented high efficiencies in eliminating TOC as well as improving the biodegradability. The integrated CUO-MBR system with low energy intensity and high frequency was more effective in eliminating COD, BOD5, TOC and reducing transmembrane pressure than either conventional MBR or ultrasound oxidation integrated MBR. The enhanced hydroxyl radical oxidation, facilitation of substrate diffusion and improvement of cell enzyme secretion were the mechanisms for CUO-MBR performance. Therefore, the integrated CUO-MBR was the promising technology for advanced treatment in engineering applications. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了实验室规模的实验,以研究将催化超声氧化(CUO)与膜生物反应器(CUO-MBR)集成在一起的新型系统,该系统可对生物预处理的煤气化废水进行深度处理。结果表明,使用FeOx / SBAC(装载Fe氧化物的污水污泥基活性炭(SBAC))催化剂的CUO在消除TOC以及提高生物降解性方面表现出很高的效率。与常规MBR或超声氧化集成MBR相比,具有低能量强度和高频的集成CUO-MBR系统在消除COD,BOD5,TOC和降低跨膜压力方面更有效。增强的羟基自由基氧化,促进底物扩散和改善细胞酶分泌是CUO-MBR性能的机制。因此,集成的CUO-MBR是在工程应用中进行高级处理的有前途的技术。 (C)2015 Elsevier Ltd.保留所有权利。

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