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Phosphate-Ion-Adsorption Capability of Granulated Boehmite Fabricated Using Organic Binder (Polyethylene Terephthalate)

机译:使用有机粘结剂(聚对苯二甲酸乙二酯)制备的粒状勃姆石的磷酸根离子吸附能力

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We investigated a method for producing granulated boehmite (BE) by using an organic binder and measured its phosphate-ion-adsorption capacity. BE was granulated using polyethylene terephthalate (PET), and its structure was characterized by scanning electron microscopy and X-ray diffraction analyses. The properties of granulated BE such as specific surface area, mean pore diameter, pore volume, amount of hydroxyl groups, and solution pH were also investigated. Furthermore, adsorption isotherm; effects of contact time, temperature, and solution pH on phosphate-ion adsorption; and recovery of phosphate ions (using sodium hydroxide solution) were evaluated. BE granulated by PET (BE-PET30S) could be successfully used for phosphate-ion removal by adsorption. The specific surface area and amount of hydroxyl groups of BE-PET30S were found to be 119. 8m~2/g and 1. 4mmol/g, respectively. Granulated Bés reached equilibrium adsorption capacities within 24 h. The phosphate-ion-adsorption rate data were fitted to the pseudo-second-order kinetic model (r= 0. 981 - 0. 998). The adsorption isotherm data were fitted to both the Freundlich (0. 987 - 0. 989) and Langmuir (0. 905 - 0. 944) equations. Based on the thermodynamic study, it was found that the phosphate-ion adsorption by granulated BEs is a spontaneous and exothermic process. The phosphate ions adsorbed onto BE-PET30S could be easily recovered by using a sodium hydroxide solution (1 - 1000 mmol/L) and their recovery percentage was found to be between 63. 3% and 94. 0%. The rèsults obtained from this study could be useful for recovering phosphate ions and preventing problems related to water pollution.
机译:我们研究了一种使用有机粘合剂生产粒状勃姆石(BE)的方法,并测量了其对磷酸盐离子的吸附能力。使用聚对苯二甲酸乙二醇酯(PET)将BE制成颗粒,并通过扫描电子显微镜和X射线衍射分析对其结构进行表征。还研究了颗粒状BE的特性,例如比表面积,平均孔径,孔体积,羟基量和溶液pH。此外,吸附等温线;接触时间,温度和溶液pH值对磷酸根离子吸附的影响;并评估了磷酸根离子的回收率(使用氢氧化钠溶液)。 PET造粒的BE(BE-PET30S)可成功用于吸附去除磷酸根离子。发现BE-PET30S的比表面积和羟基量分别为119. 8m〜2 / g和1. 4mmol / g。 Bés颗粒在24小时内达到平衡吸附容量。磷酸根离子吸附速率数据拟合到拟二级动力学模型(r = 0.981-0.998)。将吸附等温线数据拟合到Freundlich(0.987-0.989)和Langmuir(0.905-0.944)方程中。根据热力学研究,发现颗粒状BEs吸附磷酸根离子是一个自发的放热过程。使用氢氧化钠溶液(1-1000 mmol / L)可以轻松回收吸附在BE-PET30S上的磷酸根离子,发现其回收率在63. 3%至94. 0%之间。从这项研究中获得的结果可能对回收磷酸根离子和预防与水污染有关的问题很有用。

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