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Effects of High pH on Arsenic Mobility in a Shallow Sandy Aquifer and on Aquifer Permeability along the Adjacent Shoreline, Commencement Bay Superfund Site, Tacoma, Washington

机译:高pH对浅沙质含水层中砷迁移率以及沿邻近海岸线的含水层渗透率的影响,华盛顿塔科马市开始海湾超级基金站点

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摘要

A groundwater arsenic plume, derived from arsenite wastes disposed at a chemical plant in Tacoma, WA, extends to the shore of the Hylebos Waterway. The plume is characterized by high-pH, high-silica concentrations generated by past disposal of high-pH brines on site. Aquifer K_d values for arsenic decrease at least 10-fold as the phi increases from 8.5 to 11. Near the shore, aquifer sands are cemented, predominantly by opal quartz. Cementation reduces porosity to about 19%; however, very little pore space is interconnected. Along the shore face, a massive amorphous precipitate, high in Si and Mg, isfound. SOLMINEQ calculations show that mixing high-pH, high-silica groundwater with seawater causes initial supersaturation of brucite [Mg(OH)_2] and magnesium hydroxysilicates. The cementation has likely considerably reduced the cumulative discharge of arsenic to the waterway.
机译:地下水砷羽流是从位于华盛顿州塔科马市一家化工厂的砷矿废料中提取的,一直延伸到Hylebos水路的海岸。烟羽的特征是过去在现场处置高pH盐水后会产生高pH,高二氧化硅浓度。当phi从8.5增加到11时,砷的含水层K_d值至少降低10倍。在海岸附近,主要用蛋白石石英固结了含水层的沙子。胶结将孔隙率降低至约19%;但是,很少有孔隙相互连接。沿海岸面,发现了一块块状的高Si和Mg非晶质沉淀物。 SOLMINEQ计算表明,将高pH,高二氧化硅的地下水与海水混合会导致水镁石[Mg(OH)_2]和羟基硅酸镁的初始过饱和。胶结可能大大减少了砷向水道的累积排放。

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