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含钙材料对砷酸盐吸附行为的比较研究

A Comparison Study on the Arsenate Adsorption Behavior of Calcium-Bearing Materials.

作者信息

Wang Han, Zhu Hong

机构信息

College of Materials Science and Engineering, Nanjing Tech University, Nanjing 210009, China.

出版信息

Materials (Basel). 2019 Jun 16;12(12):1936. doi: 10.3390/ma12121936.

Abstract

The calcium-bearing adsorbents are widely used in the treatment of arsenic-containing wastewater due to their excellent treatment effect and economy. In order to obtain high-efficient adsorbents for arsenate (As(V)) removal, the adsorption behavior of calcium oxide (CaO), calcium fluoride (CaF) and calcium carbonate (CaCO) on As(V) in aqueous solution at different concentrations were explored. The adsorption mechanism was also explored based on surface characteristics: morphology, specific surface area, as well as their effective calcium content. Not only that, the chemical stability of these materials was further studied. Results exhibited that the As(V) removal capability of these materials is in the following order, CaO > CaF > CaCO. When CaO served as an absorbent, As(V) with initial concentration of 0.2 mg/L can be reduced to 0.383 × 10 mg/L in 10 min. Moreover, the capabilities of CaO, CaF and CaCO for removing As(V) are positively correlated with their effective calcium content in aqueous solution, which provide the basis for selecting calcium-bearing materials with excellently comprehensive properties for the field of As(V) removal in aqueous solution. What's more, all three materials exhibit great chemical stability after adsorption of As(V).

摘要

含钙吸附剂因其优异的处理效果和经济性而被广泛应用于含砷废水的处理。为了获得高效去除砷酸盐(As(V))的吸附剂,研究了氧化钙(CaO)、氟化钙(CaF)和碳酸钙(CaCO)在不同浓度水溶液中对As(V)的吸附行为。还基于表面特性(形态、比表面积及其有效钙含量)探讨了吸附机理。不仅如此,还进一步研究了这些材料的化学稳定性。结果表明,这些材料对As(V)的去除能力顺序为:CaO > CaF > CaCO。当CaO作为吸附剂时,初始浓度为0.2 mg/L的As(V)在10分钟内可降至0.383×10 mg/L。此外,CaO、CaF和CaCO去除As(V)的能力与其在水溶液中的有效钙含量呈正相关,这为在水溶液中As(V)去除领域选择综合性能优异的含钙材料提供了依据。更重要的是,这三种材料在吸附As(V)后均表现出良好的化学稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c98e/6631780/61c6f1652c93/materials-12-01936-g001.jpg

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