首页> 外文会议>International Conference on Advances in Materials and Processing Technologies >Removal of Toxic Arsenic and Antimony from Groundwater Spiro Tunnel Bulkhead in Park City Utah Using Colloidal Iron Hydroxide: Comparison with Reverse Osmosis
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Removal of Toxic Arsenic and Antimony from Groundwater Spiro Tunnel Bulkhead in Park City Utah Using Colloidal Iron Hydroxide: Comparison with Reverse Osmosis

机译:使用胶体铁氢氧化铁去除Park City犹他州地下水螺隧道舱壁中的毒性砷和锑:与反渗透相比

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Verification testing of two model technologies in pilot scale to remove arsenic and antimony based on reverse osmosis and chemical coagulation/filtration systems was conducted in Spiro Tunnel Water Filtration Plant located in Park City, Utah, US. The source water was groundwater in abandoned silver mine, naturally contaminated by 60-80ppb of arsenic and antimony below 10ppb. This water represents one of the sources of drinking water for Park City and constitutes about 44% of the water supply. The failure to remove antimony efficiently by coagulation/filtration (only 4.4% removal rate) under design conditions is discussed in terms of the chemistry differences between Sb (III, V) and As (III, V). Removal of Sb(V) at pH>7, using coagulation/filtration technology, requires much higher (50 to 80 times) concentration of iron (III) than As. The stronger adsorption of arsenate over a wider pH range can be explained by the fact that arsenic acid is tri-protic, whereas antimonic acid is monoprotic. This difference in properties of As(V) and Sb(V) makes antimony (V) more difficult to be efficiently removed in low concentrations of iron hydroxide and alkaline pH waters, especially in concentration of Sb<10ppb.
机译:在位于犹他州公园城市,我们的螺旋隧道水过滤装置进行了试验规模两种模型技术以去除砷和化学凝血/过滤系统的验证测试。源水是废弃银矿地下水,天然污染60-80ppb的砷和锑低于10ppb。这种水代表了Park City的饮用水来源之一,占供水约44%。在Sb(III,V)和As(III,V)之间的化学差异方面,在设计条件下讨论了在设计条件下有效地通过凝固/过滤(仅4.4%的去除率)进行锑。使用凝固/过滤技术除去pH> 7的Sb(V),需要高于(50至80倍)的铁(III)浓度。在较宽的pH范围内的砷酸盐的强烈吸附可以解释砷酸是三种保护的事实,而抗酸是单蛋白。作为(v)和Sb(V)的性质的这种差异使锑(v)更难以在低浓度的氢氧化铁和碱性pH水中有效地除去,特别是在Sb <10ppb的浓度中。

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