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The Influence of Salt Anions on Heavy Metal Ion Adsorption on the Example of Nickel

机译:以镍为例盐阴离子对重金属离子吸附的影响

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摘要

The biodegradable polysaccharide chitosan possesses protonated and natural amino groups at medium pH values and has therefore been used as an adsorbing material for nickel salts in water treatment. Nickel is a problematic heavy metal ion which can cause various diseases and disorders in living organisms. Here, we show the influence of oxyanions (e.g., nitrate and sulfate) to the adsorption of nickel ions. Hence, simultaneously we are addressing the increasing global problem of nitrate and sulfate ion pollution in groundwater and surface water. A series of adsorption experiments was carried out in order to determine (i) the adsorption equilibrium, (ii) the adsorption capacity in dependence on the initial nickel ion concentration, and (iii) the influence of the anion presented in solution for the adsorption capacity. Surface morphology of chitosan flakes before and after the adsorption process has been studied with SEM-EDX analysis. The chitosan flakes exhibited promising adsorption capacities of 81.9 mg·g−1 and 21.2 mg·g−1 for nickel (sulfate) and nickel (nitrate), respectively. The calculated values of Gibbs free energy change ΔG0 confirm the higher adsorption of nickel ions in presence of sulfate ions. Hence, higher anion valence leads to a higher adsorption capacity.
机译:可生物降解的多糖壳聚糖在中等pH值下具有质子化和天然氨基,因此已被用作水处理中镍盐的吸附材料。镍是一种有问题的重金属离子,会导致生物体内的各种疾病和疾病。在这里,我们显示了氧阴离子(例如硝酸根和硫酸根)对镍离子吸附的影响。因此,与此同时,我们正在解决地下水和地表水中日益严重的全球硝酸盐和硫酸盐离子污染问题。为了确定(i)吸附平衡,(ii)取决于初始镍离子浓度的吸附容量,以及(iii)溶液中存在的阴离子对吸附容量的影响,进行了一系列吸附实验。 。通过SEM-EDX分析研究了壳聚糖薄片在吸附前后的表面形态。壳聚糖薄片对镍(硫酸盐)和镍(硝酸盐)的吸附能力分别为81.9 mg·g -1 和21.2 mg·g -1 。吉布斯自由能变化量ΔG 0 的计算值证实了硫酸根离子对镍离子的吸附能力更高。因此,更高的阴离子化合价导致更高的吸附容量。

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