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采用新型非均相 Fenton 氧化与生物工艺集成法对生物预处理煤气化废水进行深度处理。

Advanced treatment of biologically pretreated coal gasification wastewater by a novel integration of heterogeneous Fenton oxidation and biological process.

机构信息

State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.

State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.

出版信息

Bioresour Technol. 2015 Apr;182:389-392. doi: 10.1016/j.biortech.2015.02.019. Epub 2015 Feb 14.

Abstract

Laboratorial scale experiments were conducted in order to investigate a novel system integrating heterogeneous Fenton oxidation (HFO) with anoxic moving bed biofilm reactor (ANMBBR) and biological aerated filter (BAF) process on advanced treatment of biologically pretreated coal gasification wastewater (CGW). The results indicated that HFO with the prepared catalyst (FeOx/SBAC, sewage sludge based activated carbon (SBAC) which loaded Fe oxides) played a key role in eliminating COD and COLOR as well as in improving the biodegradability of raw wastewater. The surface reaction and hydroxyl radicals (OH) oxidation were the mechanisms for FeOx/SBAC catalytic reaction. Compared with ANMBBR-BAF process, the integrated system was more effective in abating COD, BOD5, total phenols (TPs), total nitrogen (TN) and COLOR and could shorten the retention time. Therefore, the integrated system was a promising technology for engineering applications.

摘要

为了对生物预处理煤气化废水(CGW)进行深度处理,进行了实验室规模的实验,以研究一种将非均相芬顿氧化(HFO)与缺氧移动床生物膜反应器(ANMBBR)和生物曝气滤池(BAF)集成的新型系统。结果表明,用制备的催化剂(FeOx/SBAC,负载 Fe 氧化物的污水污泥基活性炭(SBAC))进行的 HFO 在消除 COD 和 COLOR 以及提高原废水的可生物降解性方面发挥了关键作用。表面反应和羟基自由基(OH)氧化是 FeOx/SBAC 催化反应的机制。与 ANMBBR-BAF 工艺相比,集成系统在降低 COD、BOD5、总酚(TPs)、总氮(TN)和 COLOR 方面更有效,并可以缩短停留时间。因此,该集成系统是一种有前途的工程应用技术。

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