Isothermal and thermodynamic Studies of Lead Sorption on Alginate Hydrogel Strengthened by Sepiolite Clay

نسیم ذوق, مهران شیروانی
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引用次数: 1

Abstract

Alginate biopolymer, due to possessing a high capacity and affinity for heavy metals, is a suitable material for the removal of metals from polluted waters; however, the weak structural consistency of alginate hydogels limits the practical application of this natural polymer in water purification practices. In this study, sepiolite clay mineral was used as a solidifier of alginate hydrogel to produce hybrid materials with different clay:alginate ratios (1:2, 1:4 and 1:8). Subsequently, the sorption of Pb by the prepared hybrid materials was studied in different Pb concentrations (25 to 2000 mg/L) and temperatures (15, 25, 35 and 45 °C). The results showed that the Langmuir and freundlich equations could significantly describe Pb sorption data on the sorbents. Based on the Langmuir model estimation, alginate showed and sepiolite showed the highest and lowest capacities for Pb sorption, respectively; also, the hybrids were intermediates in this respect. The capacity and affinity of all sorbents were enhanced with increasing the temperature from 15 to 45 °C. Standard enthalpy changes (ΔH°) were found to be positive, confirming that the process of Pb sorption on the sorbents was endothermic. Positive values were also obtained for the standard entropy changes (ΔS°), suggesting increased randomness at the solid-solution interface during the sorption of Pb ions on the sorbents. The values of the standard free energy change (ΔG°) were negative for all different temperatures, thereby indicating that sorption on the sorbents was spontaneous and favorable. Overall, it could be concluded that modification of alginate with sepiolite might cause the decreased sorption capacity of alginate; however, the hybrid materials are good candidates for the Pb removal from aqueous solutions because of their high sorption capacities.
海泡石粘土强化海藻酸盐水凝胶吸附铅的等温和热力学研究
藻酸盐生物聚合物对重金属具有较高的吸附能力和亲和力,是去除污染水体中重金属的理想材料;然而,藻酸盐水凝胶的弱结构一致性限制了这种天然聚合物在水净化实践中的实际应用。本研究以海泡石粘土矿物为海藻酸盐水凝胶的固化剂,制备了不同粘土与海藻酸盐比例(1:2、1:4和1:8)的杂化材料。随后,研究了所制备的杂化材料在不同Pb浓度(25 ~ 2000 mg/L)和温度(15、25、35、45℃)下对Pb的吸附。结果表明,Langmuir方程和freundlich方程能较好地描述吸附剂对Pb的吸附。根据Langmuir模型估算,藻酸盐和海泡石对Pb的吸附能力分别最高和最低;在这方面,杂交种也是中间产物。温度从15℃升高到45℃,各吸附剂的容量和亲和力均增强。标准焓变(ΔH°)为正,证实了吸附剂对Pb的吸附过程是吸热的。标准熵变也为正值(ΔS°),表明吸附剂吸附Pb离子时固溶界面的随机性增加。标准自由能变化(ΔG°)在不同温度下均为负值,表明吸附剂的吸附是自发的,有利于吸附。综上所述,海泡石改性藻酸盐可能导致藻酸盐吸附能力下降;然而,杂化材料由于其高吸附能力,是去除水溶液中铅的良好候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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