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砷酸钙@砷酸铁包覆材料的合成及其在含砷废水处理中的应用。

The synthesis of calcium arsenate@iron arsenate coating materials and their application for arsenic-containing wastewater treatment.

作者信息

Wang Yang, Rong Zhihao, Tang Xincun, Cao Shan

机构信息

College of Chemistry and Chemical Engineering, Central South University Changsha 410083 China

School of Light Industry and Engineering, Qilu University of Technology Shandong 250353 China

出版信息

RSC Adv. 2020 Jan 2;10(2):719-723. doi: 10.1039/c9ra05278j.

Abstract

The current method of treating arsenic-containing wastewater is mainly to use a calcium method to synthesize stable calcium arsenate. It is easy to cause reverse dissolution by rain or other erosion, releasing arsenic into the natural world and polluting soil and groundwater. So, calcium arsenate is not an ideal material for removing and immobilizing arsenic. Iron arsenate (FeAsO) is much better than calcium arsenate because of its stability and acid resistance. In this study, calcium arsenate@iron arsenate coating materials were synthesized. From the results of the XRD and SEM analyses, it was shown that calcium arsenate was coated by an iron arsenate shell which consisted of nanoparticles. The stability of the coating materials was determined using the Toxicity Characteristic Leaching Procedure (TCLP). The results showed that the concentrations of As for CaHAsO and Ca(AsO) were 744 mg L and 302.2 mg L, respectively. Arsenic was not detected through the TCLP tests for CaHAsO@FeAsO and Ca(AsO)@FeAsO coating materials, and the best coating condition was confirmed to be an Fe/As molar ratio of 4 : 1, pH of 4, and temperature of 50 °C. The stability of the materials showed a significant improvement. The results indicated that calcium arsenate materials could be converted to coating materials by using ferric salts. The coating materials had excellent stability in an aqueous solution. Thus, the coating was suitable for the removal and immobilization of arsenic in industrial applications. This work provided a new way to treat arsenic-containing wastewater, which was simple and economical. This method has potential for use in the field of wastewater treatment containing arsenic.

摘要

目前处理含砷废水的方法主要是采用钙法合成稳定的砷酸钙。它容易因雨水或其他侵蚀而发生逆向溶解,将砷释放到自然界中,污染土壤和地下水。因此,砷酸钙不是去除和固定砷的理想材料。砷酸铁(FeAsO)因其稳定性和耐酸性比砷酸钙要好得多。在本研究中,合成了砷酸钙@砷酸铁包覆材料。从XRD和SEM分析结果表明,砷酸钙被由纳米颗粒组成的砷酸铁壳包覆。使用毒性特性浸出程序(TCLP)测定包覆材料的稳定性。结果表明,CaHAsO和Ca(AsO)的As浓度分别为744 mg/L和302.2 mg/L。对于CaHAsO@FeAsO和Ca(AsO)@FeAsO包覆材料,通过TCLP测试未检测到砷,并且最佳包覆条件被确认为Fe/As摩尔比为4∶1、pH为4和温度为50℃。材料的稳定性有显著提高。结果表明,砷酸钙材料可以通过使用铁盐转化为包覆材料。包覆材料在水溶液中具有优异的稳定性。因此,该包覆层适用于工业应用中砷的去除和固定。这项工作提供了一种处理含砷废水的新方法,既简单又经济。该方法在含砷废水处理领域具有应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf88/9047570/a56949dcf315/c9ra05278j-f1.jpg

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