Department of Environmental Sciences, College of Basic Science and Humanities, G. B. Pant University of Agriculture and Technology, Pantnagar, Uttarakhand, 263145, India.
Environ Monit Assess. 2019 Sep 6;191(10):615. doi: 10.1007/s10661-019-7777-5.
Silica gel chitosan composite was prepared to perform adsorptive experiment of different heavy metal ion solutions. The characterization of chitosan + silica gel (Ch + Sg) composite was done by FTIR and SEM-EDS to understand the presence of active sites and to have an insight on the surface morphology. The adsorption study of heavy metal ions by Ch + Sg composite gives maximum removal percent for Cu, Pb and Ni which were obtained at pH 5 and for Hg at pH 6.The trend of removal by Ch + Sg signifies that maximum removal percent was attained at 120 min. The surface of Ch + Sg is heterogeneous for the adsorption of Hg, Ni and Cu and homogeneous for Pb adsorption. The values obtained for Pb signify that its adsorption best fitted to pseudo first order with the R value of 0.986, whereas pseudo second order best fitted to the experimental data of Cu, Ni and Hg as R values which are 0.983, 0.819 and 0.957 respectively. The values of change in entropy (⊿S) obtained for Pb, Cu, Ni and Hg are - 69.33, - 118, - 63.33 and - 98.52 J/mol K respectively. Negative values of change in enthalpy, ⊿H in (kJ/mol) are in the range of - 18.2 to - 37.66 which indicates both physical and chemical adsorption involves in the process of adsorption.
硅胶壳聚糖复合材料被制备以进行不同重金属离子溶液的吸附实验。壳聚糖+硅胶(Ch+Sg)复合材料的特性通过 FTIR 和 SEM-EDS 进行了表征,以了解活性位点的存在,并深入了解表面形态。Ch+Sg 复合材料对重金属离子的吸附研究表明,在 pH 5 时对 Cu、Pb 和 Ni 的去除率最高,在 pH 6 时对 Hg 的去除率最高。Ch+Sg 的去除趋势表明,在 120 分钟时达到了最高去除率。Ch+Sg 的表面对于 Hg、Ni 和 Cu 的吸附是不均匀的,而对于 Pb 的吸附是均匀的。对于 Pb 的吸附,得到的值表明其吸附最符合准一级动力学,R 值为 0.986,而对于 Cu、Ni 和 Hg 的实验数据,准二级动力学最符合,R 值分别为 0.983、0.819 和 0.957。对于 Pb、Cu、Ni 和 Hg 的熵变(⊿S)的值分别为-69.33、-118、-63.33 和-98.52 J/mol K。焓变(⊿H)的负值在-18.2 到-37.66 范围内,表明物理和化学吸附都参与了吸附过程。