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Utilization of a Selective Adsorbent for Phosphorus Removal from Wastewaters

机译:利用选择性吸附剂去除废水中的磷

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In this study, a synthetic layered double hydroxide modified with chloride ions (LDH-Cl) was employed for the removal of phosphorus from wastewaters. A series of phosphate adsorption experiments demonstrated that the adsorption capacity of LDH-Cl was described well by the three-parameter isotherm model (Langmuir–Freundlich combination model). LDH-Cl was found to have 50 mg P/g of ion exchange capacity for phosphate, which was sufficient for phosphate recovery from wastewaters. Phosphate adsorption by LDH-Cl also followed pseudo-second-order reaction kinetics. Effective replacement of Cl− with PO43− during sorption was confirmed by X-ray diffraction and Fourier transform infrared analyses. Adsorption capacity varied with pH and reached a maximum value at pH 3. Anions commonly present in most wastewaters, such as nitrate, sulfate, and chloride, had a minimal effect on phosphate adsorption by LDH-Cl. On the contrary, the amount of phosphate ions removed by LDH-Cl decreased with increasing bicarbonate ion concentration. LDH-Cl also exhibited a sufficient chemical stability against adsorption/desorption repetitions and 80% of desorption rate was achieved at 5 M NaCl concentration. LDH-Cl exhibited a high phosphate removal capacity and a low sensitivity to the environmental conditions of wastewaters, supporting use as an effective means for the removal of phosphate.
机译:在这项研究中,用氯离子(LDH-Cl)改性的合成层状双氢氧化物用于去除废水中的磷。一系列磷酸盐吸附实验表明,三参数等温模型(Langmuir-Freundlich组合模型)很好地描述了LDH-Cl的吸附能力。发现LDH-Cl具有50 phosphatemg P / g的磷酸根离子交换能力,这足以从废水中回收磷酸盐。 LDH-Cl对磷酸盐的吸附也遵循拟二级反应动力学。 X射线衍射和傅立叶变换红外分析证实了在吸附过程中用PO43-有效替代了Cl-。吸附能力随pH的变化而变化,并在pH 3时达到最大值。大多数废水中通常存在的阴离子(例如硝酸根,硫酸根和氯离子)对LDH-Cl吸附磷酸盐的影响最小。相反,LDH-Cl去除的磷酸根离子的量随碳酸氢根离子浓度的增加而降低。 LDH-Cl还表现出足够的化学稳定性,可抵抗吸附/解吸重复,在5 M NaCl浓度下达到80%的解吸率。 LDH-Cl表现出高的磷酸盐去除能力,并且对废水的环境条件敏感性低,支持用作有效的磷酸盐去除方法。

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