Yuan Tao, Hu Jiang Yong, Ong Say Leong, Luo Qi Fang, Ng Wern Jun
Centre for Water Research, Department of Civil Engineering, Faculty of Engineering, National University of Singapore, Singapore.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2002 Oct;37(9):1721-36. doi: 10.1081/ese-120015432.
Geogenic inorganic arsenic contamination in drinking water has been raising public health concern especially in developing countries. Cost-effective and stopgap arsenic removal method for household use (cooking and drinking) is very urgent. Several iron treated natural materials such as Fe-treated activated carbon (FeAC), Fe-treated gel beads (FeGB) and iron oxide-coated sand (IOCS), were investigated in this study for arsenic removal from dispersed household drinking water supply (scattered wells in the endemic arsenic poisoning areas). IOCS showed consistently good performance in terms of As(III) and As(V) removal in batch tests, column tests and field experiment. As(V) adsorption decreased slightly but As(III) adsorption maintained relatively stable when the pH value was increased from 5 to 9. In strong hardness water (612.5 mg/L CaCO3), As(III) adsorption efficiency was noted to decrease. The adsorption data obtained in column test fitted well to the Langmuir isotherm model. The adsorbent recovery efficiency was above 94% when using 0.2N NaOH regenerated the columns. In addition, 200 L of product water was produced by the household device (containing 3.0 kg IOCS produced) when the influent arsenic concentration ranging from 0.202 to 1.733 mg/L was encountered during the field experimental study conducted in Shanyin County, China. Neither the iron leaching nor other water quality deterioration was observed. It was noted in this study that IOCS is a promising medium for arsenic removal from household drinking water supplies.
饮用水中地质成因的无机砷污染一直引发着公众对健康的担忧,尤其是在发展中国家。开发一种经济高效且可应急的家庭(用于烹饪和饮用)除砷方法迫在眉睫。本研究考察了几种经过铁处理的天然材料,如铁处理活性炭(FeAC)、铁处理凝胶珠(FeGB)和氧化铁涂层砂(IOCS),用于去除分散式家庭饮用水供应(砷中毒流行地区的分散水井)中的砷。在批量试验、柱试验和现场实验中,IOCS在去除As(III)和As(V)方面均表现出持续良好的性能。当pH值从5增加到9时,As(V)的吸附略有下降,但As(III)的吸附保持相对稳定。在高硬度水(612.5mg/L CaCO3)中,As(III)的吸附效率有所下降。柱试验获得的吸附数据很好地拟合了朗缪尔等温线模型。使用0.2N NaOH再生柱子时,吸附剂的回收效率高于94%。此外,在中国山阴县进行的现场实验研究中,当进水砷浓度在0.202至1.733mg/L范围内时,家用设备(包含3.0kg生产的IOCS)产生了200L的产水。未观察到铁的浸出或其他水质恶化情况。本研究指出,IOCS是一种很有前景的用于去除家庭饮用水供应中砷的介质。