Yan Li, Hu Shan, Jing Chuanyong
State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; University of Chinese Academy of Sciences, Beijing 100049, China.
State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; University of Chinese Academy of Sciences, Beijing 100049, China.
J Environ Sci (China). 2016 Nov;49:74-85. doi: 10.1016/j.jes.2016.07.007. Epub 2016 Aug 1.
Arsenic (As)-contaminated wastewater and groundwater pose a pressing environmental issue and worldwide concern. Adsorption of As using TiO materials, in combination with filtration, introduces a promising technology for the treatment of As-contaminated water. This review presents an overview on the recent progress of the application of TiO for removal of As from wastewater and groundwater. The main focus is on the following three pressing issues that limit the field applications of TiO for As removal: coexisting ions, simulation of breakthrough curves, and regeneration and reuse of spent TiO materials. We first examined how the coexisting ions in water, especially high concentrations of cations in industrial wastewater, affect the efficacy of As removal using the TiO materials. We then discussed As breakthrough curves and the effect of compounded ions on the breakthrough curves. We successfully simulated the breakthrough curves by PHREEQC after integrating the CD-MUSIC model. We further discussed challenges facing the regeneration and reuse of TiO media for practical applications. We offer our perspectives on remaining issues and future research needs.
受砷(As)污染的废水和地下水构成了一个紧迫的环境问题,受到全球关注。使用二氧化钛(TiO)材料吸附砷,并结合过滤,为处理受砷污染的水引入了一种很有前景的技术。本文综述了TiO在去除废水和地下水中砷方面应用的最新进展。主要关注限制TiO用于去除砷的现场应用的以下三个紧迫问题:共存离子、穿透曲线模拟以及废TiO材料的再生和再利用。我们首先研究了水中的共存离子,特别是工业废水中的高浓度阳离子,如何影响使用TiO材料去除砷的效果。然后我们讨论了砷的穿透曲线以及复合离子对穿透曲线的影响。在整合CD - MUSIC模型后,我们成功地通过PHREEQC模拟了穿透曲线。我们进一步讨论了TiO介质在实际应用中的再生和再利用所面临的挑战。我们对遗留问题和未来研究需求提出了看法。