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Microscopic, spectroscopic, and experimental approach towards understanding the phosphate adsorption onto Zn-Fe layered double hydroxide

机译:理解磷酸盐吸附到Zn-Fe层双氢氧化物上的显微镜,光谱和实验方法

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Seizure of phosphorus from wastewater and runoff has been prioritized in order to reclaim phosphorus for sustainable growth and eutrophication remediation. Here, we report an ultrasonication mediated synthesis of Zn-Fe layered double hydroxide by co-precipitation method for the recovery of phosphate. The kinetics of phosphate adsorption followed the pseudo-second-order kinetics and infra-particle diffusion model, whereas the adsorption isotherm was well fitted with the Freundlich model. Ionic strength and pH-dependent studies predicted the involvement of surface complexation in the initial phase at lower pH and interlayer anion-exchange at higher pH in the later phases of the adsorption process which was further confirmed by Raman and XPS analysis. The role of precipitation at pH 5 was confirmed by XRD where an increase in the intensity at 2 theta = 10-35 degrees along with a decrease in the proportion of Zn concentration by XPS were observed. However, from XPS analysis, insignificant loss of Fe indicated an absence of Fe precipitates. The phosphate adsorption capacity of similar to 36 mg g(-1) (pH 6, 20 mg L-1 phosphate) within 5 min coupled with an excellent selectivity against competing inorganic and organic anions make Zn-Fe LDH, a suitable adsorbent for the phosphate recovery. Moreover, the adsorbent retained similar to 72.4% of its P-adsorption capacity even after six adsorption-desorption cycles and thus, making it a highly economical adsorbent for the treatment of contaminated water. (C) 2019 The Authors. Published by Elsevier B.V.
机译:已经优先考虑了从废水和径流中缉获磷,以便回收可持续增长和富营养化补救的磷。这里,我们通过共沉淀方法报告超声介导的合成Zn-Fe层双氢氧化物的合成,用于回收磷酸盐。磷酸盐吸附的动力学遵循伪二阶动力学和红外粒子扩散模型,而吸附等温线与Freundlich模型很好地配合。离子强度和pH依赖性的研究预测的表面络合的在初始阶段在较低pH下和在吸附过程,其进一步通过拉曼光谱和XPS分析证实的后期阶段在较高的pH层间阴离子交换的参与。通过XRD证实了沉淀在pH5时的作用,其中观察到2θ= 10-35度的强度的增加以及XPS的Zn浓度的比例的降低。然而,从XPS分析中,Fe的微不足道损失表明没有Fe沉淀物。磷酸盐吸附容量与36mg g(-1)(pH6,20mg l-1磷酸)相连,偶联与竞争无机和有机阴离子的优异选择性使Zn-Fe LDH,一种合适的吸附剂磷酸盐恢复。此外,即使在六种吸附 - 解吸循环之后,吸附剂也保持其P-吸附能力的72.4%,因此使其成为治疗受污染水的高度经济的吸附剂。 (c)2019年作者。由elsevier b.v出版。

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