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Subsurface iron and arsenic removal: Low-cost technology for community-based water supply in Bangladesh

机译:地下除铁和除砷:孟加拉国社区供水的低成本技术

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摘要

The principle of subsurface or in situ iron and arsenic removal is that aerated water is periodically injected into an anoxic aquifer through a tube well, displacing groundwater containing Fe(II). An oxidation zone is created around the tube well where Fe(II) is oxidised. The freshly formed iron hydroxide surfaces provide new sorption sites for soluble Fe(II) andarsenic. The system's efficiency is determined based on the ratio between abstracted volume with reduced iron/arsenic concentrations (V) and the injected volume (Vi). In the field studypresented in this paper, the small-scale application of this technology was investigated in rural Bangladesh. It was found that at small injection volumes (>1m~3) iron removal was successful and became more effective with every successive cycle. For arsenic, however, the system did not prove to be very effective yet. Arsenic retardation was only limited and breakthrough of 10mg/L (WHO guideline) was observed before V/V_i = 1, which corresponds to arrival of groundwater at the well. Possible explanations for insufficient arsenic adsorption are the short contact times within the oxidation zone, and the presence of competing anions, like phosphate.
机译:地下或就地去除铁和砷的原理是,通过管井将充气水定期注入缺氧含水层中,以置换含Fe(II)的地下水。在管井周围形成一个氧化区,Fe(II)被氧化。新近形成的氢氧化铁表面为可溶性Fe(II)和砷提供了新的吸附位置。系统的效率取决于铁/砷浓度降低的抽象体积(V)与注入体积(Vi)之间的比率。在本文提出的现场研究中,对该技术在孟加拉国农村的小规模应用进行了调查。结果发现,在小注入量(> 1m〜3)下,除铁成功,并且在每个后续循环中都更加有效。但是,对于砷而言,该系统尚未证明非常有效。仅限制了​​砷的阻滞作用,在V / V_i = 1之前观察到突破了10mg / L(WHO准则),这对应于地下水到达井中。砷吸附不足的可能解释是氧化区内的接触时间短,以及存在竞争性阴离子(如磷酸盐)。

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