Yang Xiaofang, Yang Zhaoyi, Liu Zhen, Zhang Weijun, Wang Dongsheng
State Key Laboratory of Environmental Aquatic Chemistry, Research Centre for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China E-mail:
School of Environmental Studies, China University of Geosciences, Wuhan 430074, Hubei, China.
Water Sci Technol. 2018 Oct;78(5-6):1219-1227. doi: 10.2166/wst.2018.390.
The efficiency of Fenton oxidation was inhibited by the high content of salt in the industrial wastewater. However, enhanced mineralization of hypersaline industrial wastewater is necessary for advanced treatment and subsequent wastewater salt recovery process. Therefore, Fe and Cu catalyzed UV-Fenton oxidation were carried out to improve the total organic carbon (TOC) removal efficiency for a hypersaline wastewater from resin manufacturing. The performance of UV-Fe/Cu-Fenton oxidation was comparatively investigated and optimized using response surface methodology (RSM) to develop a practical high-efficient mineralization treatment technique for hypersaline wastewater. More than 90% of TOC was removed under optimal conditions of UV-Fe and UV-Cu-Fenton oxidation, namely 9.6 mM Fe and 176 mM HO, and 2.95 mM Cu and 276 mM HO, respectively. The reactive oxygen radicals identified using electron spin resonance (ESR) spectroscopy revealed that hydroxyl radical was dominant oxidant in UV-Fe-Fenton process, while HO·/O· played a more important role in the UV-Cu-Fenton system. The Cl effect is also different for UV Fe and Cu Fenton. Moreover, no scaling and sludge problem makes UV-Cu-Fenton a promising alternative method for efficient mineralization of hypersaline industrial wastewater.
工业废水中的高盐含量抑制了芬顿氧化的效率。然而,对于深度处理和后续的废水盐分回收过程而言,强化高盐工业废水的矿化作用是必要的。因此,开展了铁和铜催化的紫外 - 芬顿氧化,以提高树脂制造过程中产生的高盐废水的总有机碳(TOC)去除效率。采用响应面法(RSM)对紫外 - 铁/铜 - 芬顿氧化的性能进行了比较研究和优化,以开发一种实用的高盐废水高效矿化处理技术。在紫外 - 铁和紫外 - 铜 - 芬顿氧化的最佳条件下,即分别为9.6 mM铁和176 mM过氧化氢,以及2.95 mM铜和276 mM过氧化氢时,TOC的去除率超过了90%。利用电子自旋共振(ESR)光谱鉴定出的活性氧自由基表明,羟基自由基是紫外 - 铁 - 芬顿过程中的主要氧化剂,而HO·/O·在紫外 - 铜 - 芬顿体系中发挥着更重要的作用。紫外铁和铜芬顿的Cl效应也有所不同。此外,不存在结垢和污泥问题使得紫外 - 铜 - 芬顿成为高盐工业废水高效矿化的一种有前景的替代方法。