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Removal and fixation of arsenic by forming a complex precipitate containing scorodite and ferrihydrite

机译:通过形成含有焦狄石和Ferrihydite的复杂沉淀物除去和固定砷

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摘要

For the metallurgical industries, the safe disposal of arsenic-bearing waste is animportant issue. In this study, a two-stage arsenic precipitation process was proposed, which consists of formation of scorodite at lower pH followed by precipitation of arsenical ferrihydrite at higher pH. The experimental results show that arsenic can be removed effectively from a solution with arsenic concentration of 5 g/L as precipitate of crystalline scorodite through oxidizing ferrous ions with air stream at pH of 2at first. Then, the pH value was raised to 3 and 4, and almost all the residual arsenic was removed from the solution due to adsorption onto amorphous ferrihydrite at the molar ratio of Fe/As between 2 and 4. The United States Environmental Protection Agency's Toxicity Characteristic Leaching Procedure tests demonstrate that the complex precipitates generated under these conditions (Fe/As ratio of 4, final pH between 3 and 4) were very stable and no leached arsenic can be detected using acetic acid buffer solution (pH 4.93 +/- 0.05) in tests of 72 h. Experimental results suggest that a high Fe/As ratio was necessary, so that the excess iron promotes the formation a product of good stability, arsenical ferrihydrite (AsFH: AsO43-center dot Fe(OH)(H2O)(1+x)) under a relatively high pH in acidic solution.
机译:对于冶金行业来说,砷杂散的安全处置是动漫问题。在该研究中,提出了一种两级砷沉淀过程,其包括在较低的pH下形成焦孔,然后在较高的pH下沉淀砷的Ferrihydrite。实验结果表明,通过将砷浓度为5g / L的溶液可以有效地除去砷,其通过将铁离子氧化在2AT的pH的pH值中,通过将空气流氧化光子离子沉淀。然后,将pH值升高至3和4,并且由于在Fe /如2至4之间的摩尔比上吸附到无定形的Ferrihydrite上,几乎将所有残留的砷从溶液中除去/。美国环境保护局的毒性特征浸出程序试验表明,在这些条件下产生的复合沉淀物(Fe /作为4,最终pH值3和4之间)非常稳定,并且可以使用乙酸缓冲溶液(pH4.93 +/- 0.05)来检测浸出的砷在72小时的测试中。实验结果表明,高Fe / AS比率是必要的,因此过量的铁促进了稳定性稳定性的产物,砷Ferrihydrite(ASFH:ASO43中心点Fe(OH)(H2O)(1 + X))酸性溶液中的相对高的pH值。

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