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Arsenic Removal by Precipitation with Calcium Phosphate Hydroxyapatite

机译:磷酸钙羟基磷灰石沉淀去除砷

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The removal of arsenic from synthetic arsenic contaminated water sample by precipitating arsenic (in the form of arsenate oxyanion) with calcium phosphate hydroxyapatite, HAp, was studied under conditions that induce arsenate incorporated calcium phosphate hydroxyapatite, Ca(P/As)HAp, to form. Arsenate is able to substitute for a fraction of the phosphate in HAp host material as it forms. Consequently, arsenic is successfully removed from the contaminated water achieving up to 99% arsenic removal from 25 ppm initial arsenic concentration. The Ca:(P+As) and P:As mole ratios were found to play an important role in arsenic removal efficiency. Higher Ca:(P+As) and P:As mole ratios give higher arsenic removal efficiency. Surprisingly, the pH of the initial anion solution, a key parameter in arsenic speciation, was found to not have a significant effect on arsenic removal by this process. The advantage of this process is that the precipitation can occur rapidly at relatively low levels of arsenic contamination, implying an easy and inexpensive process for arsenic removal can be developed based on this approach.
机译:在诱导砷酸盐掺入磷酸钙羟基磷灰石,Ca(P / As)Hap,形成的条件下,研究了通过沉淀砷(砷酸盐氧基形式)从合成砷污染水样中除去砷酸钙(砷酸盐氧基)的砷污染水样品。 。砷酸盐能够在HAP主体材料中替代磷酸盐的一部分。因此,从污染的水中成功地除去砷从25ppm初始砷浓度的污染水中成功地除去99%。 Ca:(p + As)和P:发现摩尔比在砷去除效率中起重要作用。较高的Ca:(p + AS)和P:作为摩尔比率,使砷的去除效率较高。令人惊讶的是,发现初始阴离子溶液的pH值,砷形式的关键参数,对该过程的砷除去没有显着影响。该方法的优点在于沉淀可以在相对较低水平的砷污染下迅速发​​生,这意味着可以基于这种方法开发砷去除的简单且廉价的方法。

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