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Comparative study on synchronous adsorption of arsenate and fluoride in aqueous solution onto MgAlFe-LDHs with different intercalating anions

机译:不同嵌入阴离子对MgAlFe-LDHs水溶液中砷和氟同步吸附的比较研究

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In this study, a series of MgAlFe-LDHs (Cl ~(?) , NO _(3) ~(?) , intercalation, and calcined products of a CO _(3) ~(2?) interlayer) was synthesized and used for adsorption of arsenate and fluoride in individual contaminants and coexisting pollutant systems. Effects of various factors such as initial pH of solution, dosage of materials, coexisting ions, contact time, and initial pollutant concentrations were evaluated. Experimental results showed that different intercalating anions had a significant effect on adsorption performance of arsenate and fluoride in water. The adsorption of arsenate and fluoride on MgAlFe-CLDH, MgAlFe–Cl-LDH or MgAlFe–NO _(3) -LDH can be described by different adsorption isotherm equations. During the simultaneous removal process, arsenate and fluoride competed for adsorption sites of the adsorbent materials, and the fluoride ions had advantages in the competitive adsorption on MgAlFe–Cl-LDH and MgAlFe–NO _(3) -LDH. MgAlFe–NO _(3) -LDH was used to adsorb arsenate and fluoride in coexisting pollution systems (the concentration of each pollutant was 2 mg L ~(?1) , the adsorbent dosage was 1.5 g L ~(?1) ). The remaining arsenic concentration was reduced to less than 10 μg L ~(?1) and the remaining fluoride ion concentration to below 20 μg L ~(?1) which meets the World Health Organization's, EPA's and China's drinking water standards for arsenic and fluoride limits. A possible mechanism is discussed with support from further XRD, SEM, and XPS analysis of the materials after their adsorption.
机译:在这项研究中,合成并使用了一系列MgAlFe-LDHs(Cl〜(?),NO _(3)〜(?),插层和CO _(3)〜(2?)中间层的煅烧产物)并使用用于吸附单个污染物和共存污染物系统中的砷酸盐和氟化物。评估了各种因素的影响,例如溶液的初始pH,材料的用量,共存离子,接触时间和初始污染物浓度。实验结果表明,不同的嵌入阴离子对水中砷酸根和氟离子的吸附性能有显着影响。砷和氟化物在MgAlFe-CLDH,MgAlFe-Cl-LDH或MgAlFe-NO _(3)-LDH上的吸附可以通过不同的吸附等温方程描述。在同时去除过程中,砷酸盐和氟化物竞争了吸附剂材料的吸附位,并且氟离子在MgAlFe–Cl-LDH和MgAlFe–NO _(3)-LDH的竞争性吸附中具有优势。 MgAlFe–NO_(3)-LDH在共存的污染系统中吸附砷和氟化物(每种污染物的浓度为2 mg L〜(?1),吸附剂量为1.5 g L〜(?1))。剩余砷浓度降低到小于10μgL〜(?1),剩余氟离子浓度降低到20μgL〜(?1)以下,符合世界卫生组织,EPA和中国饮用水中砷和氟化物的标准限制。在对材料吸附后进一步进行XRD,SEM和XPS分析的支持下,讨论了一种可能的机理。

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