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Pathways of phosphate uptake from aqueous solution by ZnAl layered double hydroxides

机译:ZnAl层状双氢氧化物从水溶液中吸收磷酸盐的途径

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ZnAl layered double hydroxides (LDHs) were prepared by urea hydrolysis-based coprecipitation for removing phosphate from aqueous solutions. The chemical formula of the product was determined as Zn_(5.54)Al_(3.02)(OH)_(8.73)(CO_3)_(0.57)Cl _(5.66)·7.84H_2O. Chloride ion was the major interlayer anion of the ZnAl LDHs. Adsorption of phosphate onto the ZnAl sorbent over the entire study period was not in close agreement with pseudo-first-order or pseudo-second-order models. The adsorption can be divided into two steps. A fast adsorption was observed during the first 10 h with a marked increase in the concentration of Cl~- in the bulk solution. This indicated that the adsorption of phosphate was largely attributed to the ion exchange between phosphate and the interlayer Cl~-. A second fast adsorption of phosphate occurred after 10 h. During this period, the pH increased slowly, whereas the Cl- concentration was stable. The uptake of phosphate was likely attributed to OH--H_2PO_4 -/HPO_4 ~(2-) ion exchange as well as surface adsorption/complexation. Acidic conditions favored adsorption of phosphate by ZnAl LDHs, which is consistent with the pH increases during the adsorption. Coexisting anions, e.g., SO_4 ~(2-) and CO_3 ~(2-), are competitive ions for the adsorption of phosphate. The results verify the contribution of ion exchange and surface adsorption/complexation in the removal of phosphate by ZnAl LDHs.
机译:通过基于尿素水解的共沉淀法制备ZnAl层状双氢氧化物(LDHs),以从水溶液中去除磷酸盐。产物的化学式确定为Zn_(5.54)Al_(3.02)(OH)_(8.73)(CO_3)_(0.57)Cl_(5.66)·7.84H_2O。氯离子是ZnAl LDHs的主要层间阴离子。在整个研究期间,磷酸盐在ZnAl吸附剂上的吸附与伪一级模型或伪二级模型并不完全一致。吸附可分为两个步骤。在最初的10小时内观察到快速吸附,本体溶液中Cl--的浓度显着增加。这表明磷酸盐的吸附主要归因于磷酸盐与中间层Cl-之间的离子交换。 10小时后第二次快速吸附磷酸盐。在此期间,pH缓慢增加,而Cl-浓度稳定。磷酸盐的吸收可能归因于OH--H_2PO_4-/ HPO_4〜(2-)离子交换以及表面吸附/络合。酸性条件有利于ZnAl LDHs吸附磷酸盐,这与吸附过程中pH的升高相一致。共存的阴离子,例如SO_4〜(2-)和CO_3〜(2-),是竞争性离子,可吸附磷酸盐。结果证实了离子交换和表面吸附/络合对ZnAl LDHs去除磷酸盐的贡献。

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