Arslan-Alaton Idil, Tureli Gokce, Olmez-Hanci Tugba
Istanbul Technical University, Faculty of Civil Engineering, Department of Environmental Engineering, Istanbul, Turkey.
Photochem Photobiol Sci. 2009 May;8(5):628-38. doi: 10.1039/b817423g. Epub 2009 Feb 11.
Treatability of synthetic Acid Blue 193 and Reactive Black 39 production wastewaters and real Reactive Black 39 production effluent via photo-Fenton-like process was investigated. The Central Composite Design technique was used to study the effect of some critical process parameters of the photo-Fenton process (e.g. reaction time, initial COD and Fe(3+) : H(2)O(2) molar ratio) on synthetic Acid Blue 193 production wastewater treatment efficiency in terms of color, chemical oxygen demand (COD) and total organic carbon (TOC) removals. Selected process parameters were optimized to obtain maximum color, COD and TOC removal efficiencies. Optimum working conditions were established as 45 min reaction time and a Fe(3+) : H(2)O(2) molar ratio of 0.073 for wastewater having an initial COD (COD(o)) of 200 mg L(-1). Under these conditions, 99% color, 83% COD and 58% TOC abatements were experimentally obtained. In case of real Reactive Black 39 production effluent, photo-Fenton-like treatment efficiency was found to be considerably lower than that of the synthetic acid and reactive dye production wastewaters, which was attributable to the relatively high chloride (i.e. a well known OH radical scavenger) content of the real effluent.
研究了通过类光芬顿工艺处理合成酸性蓝193和活性黑39生产废水以及实际活性黑39生产废水的可处理性。采用中心复合设计技术,从颜色、化学需氧量(COD)和总有机碳(TOC)去除率方面,研究了光芬顿工艺的一些关键工艺参数(如反应时间、初始COD和Fe(3+) : H(2)O(2)摩尔比)对合成酸性蓝193生产废水处理效率的影响。对选定的工艺参数进行优化,以获得最大的颜色、COD和TOC去除效率。对于初始COD(COD(o))为200 mg L(-1)的废水,确定最佳工作条件为反应时间45分钟,Fe(3+) : H(2)O(2)摩尔比为0.073。在这些条件下,实验获得了99%的颜色去除率、83%的COD去除率和58%的TOC去除率。对于实际活性黑39生产废水,发现类光芬顿处理效率明显低于合成酸性和活性染料生产废水,这归因于实际废水相对较高的氯化物(即一种众所周知的羟基自由基清除剂)含量。