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Uptake of dissolved arsenic during the retrieval of silica from spent geothermal brine

机译:从地热废盐水中回收二氧化硅时吸收溶解的砷

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A study has been made on the uptake of dissolved arsenic in a recirculation system designed to extract silicates for secondary use from spent (i.e. cooled) geothermal brine. Excess dissolved calcium, due to addition of lime (CaO), favours the precipitation of As-bearing phases in the retrieved materials. Controlling dissolved calcium in a continuous recirculation system is not easy to achieve; arsenic removal prior to precipitation of silicates is expected to be more practical. Predicted and measured arsenic speciation in the spent geothermal brine is dominated by arsenite species that were previously shown to lack affinity with most inorganic sorbents. However, synthetic schwertmannite was able to selectively remove dissolved arsenic without any significant accompanying decrease in silica concentrations. Its use prior to the introduction of spent geothermal brine into the recirculation system will likely make silica retrieval more feasible.
机译:已经进行了关于在再循环系统中吸收溶解的砷的研究,该再循环系统旨在从废(即冷却的)地热盐水中提取硅酸盐以供二次使用。由于添加了石灰(CaO),溶解的钙过多,有利于回收材料中含As相的沉淀。在连续循环系统中控制溶解的钙不容易实现。预计在硅酸盐沉淀之前去除砷更为实用。地热废盐水中的砷形态预测和测量结果主要由以前证明与大多数无机吸附剂缺乏亲和力的亚砷酸盐物种决定。但是,合成的schwertmannite能够选择性除去溶解的砷,而不会伴随二氧化硅浓度的任何明显降低。在将废地热盐水引入再循环系统之前使用它可能会使二氧化硅回收更加可行。

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