Department of Civil and Environmental Engineering, University of Michigan , Ann Arbor, Michigan 48109, United States.
Environ Sci Technol. 2013 Oct 1;47(19):10799-812. doi: 10.1021/es401749b. Epub 2013 Sep 17.
Water treatment technologies for arsenic removal from groundwater have been extensively studied due to widespread arsenic contamination of drinking water sources. Central to the successful application of arsenic water treatment systems is the consideration of appropriate disposal methods for arsenic-bearing wastes generated during treatment. However, specific recommendations for arsenic waste disposal are often lacking or mentioned as an area for future research and the proper disposal and stabilization of arsenic-bearing waste remains a barrier to the successful implementation of arsenic removal technologies. This review summarizes current disposal options for arsenic-bearing wastes, including landfilling, stabilization, cow dung mixing, passive aeration, pond disposal, and soil disposal. The findings from studies that simulate these disposal conditions are included and compared to results from shorter, regulatory tests. In many instances, short-term leaching tests do not adequately address the range of conditions encountered in disposal environments. Future research directions are highlighted and include establishing regulatory test conditions that align with actual disposal conditions and evaluating nonlandfill disposal options for developing countries.
由于饮用水源中广泛存在砷污染,地下水除砷水处理技术已得到广泛研究。成功应用砷水处理系统的关键在于考虑处理过程中产生的含砷废物的适当处置方法。然而,通常缺乏对砷废物处置的具体建议,或者将其作为未来研究的一个领域提及,而含砷废物的妥善处置和稳定化仍然是成功实施除砷技术的一个障碍。本综述总结了含砷废物的当前处置选择,包括填埋、稳定化、牛粪混合、被动曝气、池塘处置和土壤处置。纳入了模拟这些处置条件的研究结果,并与短期监管测试的结果进行了比较。在许多情况下,短期浸出测试不能充分解决处置环境中遇到的各种条件。强调了未来的研究方向,包括建立与实际处置条件相吻合的监管测试条件,以及评估发展中国家的非填埋处置选择。