Hou Baolin, Han Hongjun, Zhuang Haifeng, Xu Peng, Jia Shengyong, Li Kun
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.
Bioresour Technol. 2015 Nov;196:721-5. doi: 10.1016/j.biortech.2015.07.068. Epub 2015 Jul 26.
A novel integrated process with three-dimensional electro-Fenton (3D EF) and biological activated carbon (BAC) was employed in advanced treatment of biologically pretreated Lurgi coal gasification wastewater. SAC-Fe (sludge deserved activated carbon from sewage and iron sludge) and SAC (sludge deserved activated carbon) were used in 3D EF as catalytic particle electrodes (CPEs) and in BAC as carriers respectively. Results indicated that 3D EF with SAC-Fe as CPEs represented excellent pollutants and COLOR removals as well as biodegradability improvement. The efficiency enhancement attributed to generating more H2O2 and OH. The integrated process exhibited efficient performance of COD, BOD5, total phenols, TOC, TN and COLOR removals at a much shorter retention time, with the corresponding concentrations in effluent of 31.18, 6.69, 4.29, 17.82, 13.88mg/L and <20 times, allowing discharge criteria to be met. The integrated system was efficient, cost-effective and ecological sustainable and could be a promising technology for engineering applications.
一种新型的三维电芬顿(3D EF)与生物活性炭(BAC)集成工艺被用于对经生物预处理的鲁奇煤气化废水进行深度处理。在3D EF中,将SAC-Fe(源自污水的污泥活性炭和铁污泥)和SAC(源自污泥的活性炭)分别用作催化颗粒电极(CPE)和BAC中的载体。结果表明,以SAC-Fe作为CPE的3D EF在去除污染物和色度以及提高生物降解性方面表现出色。效率的提高归因于产生了更多的H2O2和OH。该集成工艺在更短的停留时间内对COD、BOD5、总酚、TOC、TN和色度的去除表现出高效性能,出水相应浓度分别为31.18、6.69、4.29、17.82、13.88mg/L且色度<20倍,达到排放标准。该集成系统高效、经济且生态可持续,可能成为工程应用中有前景的技术。