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Improved adsorption of cadmium ions from aqueous solution using chemically modified apple pomace: mechanism, kinetics, and thermodynamics.

机译:使用化学修饰的苹果果渣改善水溶液中镉离子的吸附:机理,动力学和热力学。

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Apple pomace (AP), before and after chemical modification (CM), was assessed for the removal of cadmium (Cd2+) ions from aqueous solution by equilibrium, kinetics, and thermodynamics studies. The chemical modification of AP was done with succinic anhydride by a simple ring opening mechanism for providing a large surface area for cadmium adsorption. The surface area of chemically modified apple pomace (CMAP) increased about 18% after the treatment. The amount of CMAP required for cadmium removal was 50 times less than the unmodified AP. The Langmuir adsorption isotherm equation was found to be more suitable for the AP and CMAP adsorption experimental data with a correlation coefficient of r 2= 0.99 than was the Freundlich isotherm. The FTIR spectra of CMAP, with or without cadmium loading, indicated that ester (-COO), carboxyl (-CO), and amine (-NH2) groups were involved in the cadmium adsorption mechanism. The adsorption of cadmium ions onto AP and CMAP followed pseudo-second-order kinetics. The DeltaG degrees value, at different temperatures, was calculated by applying the Van't Hoff equation and found to be negative, indicating that the reaction is spontaneous in nature. The value of DeltaH degrees indicated that the adsorption was exothermic (-6.93 KJ mol-1) and endothermic (3.171 KJ mol-1) for AP and CMAP, respectively. CMAP could be reutilized for up to three cycles with a removal efficiency of 76.6%, while AP efficiency lessened significantly after a single cycle
机译:通过平衡,动力学和热力学研究,评估了苹果果渣(AP)在化学修饰(CM)之前和之后从水溶液中去除镉(Cd 2 + )离子的能力。 AP的化学修饰是通过简单的开环机理用琥珀酸酐完成的,以提供大的镉吸附表面积。处理后,化学修饰的苹果渣(CMAP)的表面积增加了约18%。去除镉所需的CMAP量比未改性的AP少50倍。发现Langmuir吸附等温线方程比Freundlich等温线更适合AP和CMAP吸附实验数据,相关系数r 2 = 0.99。含或不含镉的CMAP的红外光谱表明,酯(-COO),羧基(-CO)和胺基(-NH 2 )参与了镉的吸附机理。镉离子在AP和CMAP上的吸附遵循伪二级动力学。通过应用Van't Hoff方程计算出不同温度下的DeltaG 度值,结果为负值,表明该反应本质上是自发的。 DeltaH degrees 的值表明,对于下列物质,吸附是放热的(-6.93 KJ mol -1 )和吸热的(3.171 KJ mol -1 )。 AP和CMAP分别。 CMAP最多可重复使用三个周期,去除效率为76.6%,而单个周期后AP效率显着降低

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