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Theoretical Assessment of Calcium Arsenates Stability: Application in the Treatment of Arsenic Contaminated Waste

机译:钙的理论评价稳定性:应用在砷污染废弃物的治疗中

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Several approaches for immobilization of arsenic (As) based on the transformation of its soluble forms (compounds) into highly insoluble arsenate apatite Ca_5(AsO_4)_3OH have been proposed. These immobilization techniques are successfully applied in treatment of industrial waste containing As. Quite the contrary, treatment of soil contaminated with As by apatite amendments, instead of immobilization of this toxic element, increases its mobility and bioavailability. The mechanism underlying these opposite effects still remains elusive. Here, the stability analysis of different calcium arsenates: Ca_5(AsO_4)_3OH, Ca_4(AsO_4)_2(OH)_2, Ca_3(AsO_4)_2 Ca_5H_2(AsO_4)_2 and CaHAsO_4 was performed, which is based on the calculation of the ion-ion interaction potential (IIIP). It has been demonstrated earlier that IIIP, representing the main term of the cohesive energy, is a suitable parameter for assessment of mineral stability. According to the results of this analysis, arsenate apatite with IIIP value of -0.578 Ry represents the most stable chemical form among analyzed compounds. Based on this finding, we proposed a mechanism of formation of arsenate apatite in the presence of hydroxyapatite. This mechanism can explain the suitability of this approach for the treatment of industrial waste and its limitations for in situ treatment of soil and water contaminated with As.
机译:已经提出了几种用于将砷(AS)固定的几种方法基于其可溶性形式(化合物)转化为高度不溶性的釜苷磷灰石CA_5(ASO_4)_3OH。这些固定技术成功地应用于含有含有的工业废物的处理。相反,通过磷灰石修正案污染的土壤治疗,而不是固定这种有毒元素,增加其流动性和生物利用度。这些相反效应的​​基础仍然难以实现。这里,进行不同钙的稳定性分析:CA_5(ASO_4)_3OH,CA_4(ASO_4)_2(OH)_2,CA_3(ASO_4)_2CA_5H_2(ASO_4)_2和CAHASO_4,这是基于离子的计算-ion互动潜力(IIIP)。迄今为止,IIIP代表了粘性能量的主要术语,是评估矿物稳定性的合适参数。根据该分析的结果,具有IIIP值-0.578 RY的砷磷酸盐代表了分析化合物中最稳定的化学形式。基于这一发现,我们提出了在羟基磷灰石的存在下形成砷酸盐的机制。这种机制可以解释这种方法对工业废物处理的适用性及其在污染的土壤和水的原位处理的局限性。

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