Department of Civil Engineering, Hunan University of Science and Technology, Xiangtan, 411201, China.
Environ Technol. 2011 Jul;32(9-10):945-51. doi: 10.1080/09593330.2010.521953.
In this study, laboratory experiments were conducted to compare the efficacy of several H2O2-based advanced oxidation processes (AOPs): UV-Fenton, UV-H2O2, and Fenton reagent, to treat landfill leachate with the objective of removing COD and improving the leachate's overall biodegradability (evaluated in terms of BOD5/COD ratio). The results indicated that, at optimized experimental conditions of 25 degrees C, pH 4.0, 4000 mg L(-1) H2O2, 30 mg L(-1) Fe(II) (for UV-Fenton and Fenton) and 60 min reaction time, the UV-Fenton system showed the highest COD removal. The COD removal rate in the H2O2-based AOPs was strongly dependent on the concentration of H2O2 and the pH value. Temperature had little effect on overall COD removal rate in the Fenton and Fenton-like systems. All three systems would result in a significant increase in the ratio of BOD5/COD, from 0.17 to about 0.60, at the applied H2O2 dosage of 4000 mg L(-1). The increase in biodegradability of the AOP leachate indicates that these AOPs would be beneficial for the subsequent biological treatment process. The UV-Fenton process was found to be the most effective approach of these H2O2-based AOPs to enhance the biodegradability and eliminate the colour of the leachate.
在这项研究中,进行了实验室实验,以比较几种基于 H2O2 的高级氧化工艺 (AOPs) 的效果:UV-Fenton、UV-H2O2 和 Fenton 试剂,以处理垃圾渗滤液,目标是去除 COD 并提高渗滤液的整体可生物降解性(用 BOD5/COD 比来评估)。结果表明,在 25°C、pH4.0、4000mg/L H2O2、30mg/L Fe(II)(用于 UV-Fenton 和 Fenton)和 60min 反应时间的优化实验条件下,UV-Fenton 体系表现出最高的 COD 去除率。基于 H2O2 的 AOP 中的 COD 去除率强烈依赖于 H2O2 的浓度和 pH 值。温度对 Fenton 和类 Fenton 体系的总体 COD 去除率影响不大。在应用的 H2O2 剂量为 4000mg/L 时,所有三种系统都会导致 BOD5/COD 比值从 0.17 显著增加到约 0.60。AOP 渗滤液的生物降解性的提高表明,这些 AOPs 将有利于随后的生物处理过程。发现 UV-Fenton 工艺是这些基于 H2O2 的 AOP 中最有效的方法,可以提高渗滤液的可生物降解性并消除其颜色。