Removal of Heavy Metal Ions(Fe2+, Mn2+, Cu2+ and Zn2+) on to Activated Carbon Prepared from Kashmiri Walnut Shell (Juglans regia)

Suhail Abdullah Malik, Sharief-ud-din Khan, B. Dar
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Abstract

Heavy metal pollution poses significant threats to the environment and human health, even at trace concentrations. In this study, activated carbon derived from Kashmiri walnut shell (Juglans regia) was investigated for its potential to adsorb heavy metal ions (Fe2+, Mn2+, Cu2+, and Zn2+). Standard solutions containing heavy metal ions at concentrations ranging from 10 to 50 ppm were prepared for adsorption experiments, i.e., at temperature 25 °C, and adsorbent dosage 1 g using a column mechanism. The activated carbon was first treated with 0.1M HCl and 0.5M ammonia solutions, and then washed with demineralised water. Subsequently, the metal ion solutions were passed through the column individually, and the filtrates were analyzed for heavy metal ion presence. The experimental results demonstrated that walnut shell-derived activated carbon exhibited promising adsorption capacity spanning from 0.36 mg/g for Zn2+, 0.5 mg/g for both Mn2+ and Cu2+ and 0.54 mg/g for Fe2+ thus showing the adsorption trend as Fe2+ > Mn2+ = Cu2+ > Zn2+. This study highlights the potential of using walnut shell-derived activated carbon as an effective and cost-efficient method for mitigating heavy metal pollution in contaminated water sources.
克什米尔核桃壳制备的活性炭对重金属离子(Fe2+、Mn2+、Cu2+ 和 Zn2+)的去除作用
重金属污染对环境和人类健康构成严重威胁,即使是痕量浓度的重金属。本研究调查了从克什米尔核桃壳(Juglans regia)中提取的活性炭吸附重金属离子(Fe2+、Mn2+、Cu2+ 和 Zn2+)的潜力。在温度为 25 °C、吸附剂用量为 1 克的条件下,采用柱式机制制备含有重金属离子的标准溶液,浓度范围为 10 至 50 ppm。首先用 0.1M HCl 和 0.5M 氨溶液处理活性炭,然后用去离子水洗涤。随后,金属离子溶液分别通过柱,并对滤液进行重金属离子含量分析。实验结果表明,核桃壳衍生活性炭具有良好的吸附能力,Zn2+ 为 0.36 mg/g,Mn2+ 和 Cu2+ 均为 0.5 mg/g,Fe2+ 为 0.54 mg/g,因此吸附趋势为 Fe2+ > Mn2+ = Cu2+ > Zn2+。这项研究凸显了使用核桃壳衍生活性炭作为一种有效且具有成本效益的方法来减轻受污染水源中重金属污染的潜力。
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