Arsenic Mitigation Technologies from Ground Water: A Brief Review

Salma Akter Mou, M. Kabir, S. Yasmin, Shamim Ahmed
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Abstract

Contamination of drinking water due to the presence of as has become a global environmental and socio-economic threat. The appearance of high Arsenic (As) in drinking water causes a serious health issue around the world. Many countries in different parts of the world have reported high arsenic concentrations. Among all groundwater arsenic contamination affected countries, the position of Bangladesh is the worst. Therefore, it is very important to develop affordable and efficient techniques to remove As from drinking water to protect human health. The most used methods are oxidation, coagulation, adsorption, ion exchange, and membrane technologies. Oxidation is usually used as pretreatment for most of the methods. Coagulation is the most common arsenic mitigation technology in Bangladesh. This technique is effective from pH 6-8. Ion exchange resins can only remove arsenate. Activated alumina beds work best in slightly acidic waters and usually have much longer run times than ion exchange resins. A cost-effective method for mitigation of As from drinking water is the use of low-cost adsorbent. Membrane methods which are more costly than other arsenic mitigation techniques but very effective where very low arsenic levels are required. Providing a safe water source may not possible in some of the arsenic affected regions or sometimes this process becomes very expensive. Mitigation of As from drinking water may be more appropriate in these situations. This paper presents a review of the conventional methods used for mitigation of As from contaminated drinking water.
地下水减砷技术综述
由于砷的存在而造成的饮用水污染已成为全球性的环境和社会经济威胁。饮用水中高砷的出现在世界范围内引起了严重的健康问题。世界不同地区的许多国家都报告了高砷浓度。在所有受地下水砷污染影响的国家中,孟加拉国的情况最为严重。因此,开发经济有效的技术来去除饮用水中的砷,以保护人类健康是非常重要的。最常用的方法是氧化、混凝、吸附、离子交换和膜技术。大多数方法通常采用氧化作为预处理。混凝是孟加拉国最常见的砷缓解技术。这种方法在pH值6-8时有效。离子交换树脂只能去除砷酸盐。活性氧化铝床在微酸性水中工作最好,通常比离子交换树脂运行时间长得多。使用低成本吸附剂是减少饮用水中砷的一种经济有效的方法。膜法比其他减砷技术成本更高,但在需要极低的砷含量时非常有效。在一些受砷影响的地区,提供安全的水源可能是不可能的,或者有时这一过程变得非常昂贵。在这些情况下,减少饮用水中的砷可能更为合适。本文综述了用于减少受污染饮用水中砷的常规方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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