A novel permanganate and peroxide carbon-based avocado seed waste for the adsorption of manganese and chromium ions from water

K. Mabalane, N.D. Shooto, P.M. Thabede
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Abstract

Activated carbon from avocado seed waste was processed for the sorption of manganese and chromium ions from contaminated water to protect water quality and human health. The aim was to convert pristine avocado seed waste into carbon and then activate it with hydrogen peroxide, potassium permanganate and nitric acid to facilitate the adsorption of manganese and chromium ions from aqueous media. The variation of the parameters such as pH of the solution, reaction time, initial concentration and temperature were investigated. The results show that the adsorbent modified with hydrogen peroxide has a large surface area compared to the other adsorbents. The maximum adsorption capacity for manganese and chromium ions was achieved at a pH value of 2. The results show that the removal efficiency of manganese and chromium ions increases with increasing contact time in the initial phase of the process and the adsorption rate is also fast before reaching equilibrium. The maximum adsorption capacities of manganese and chromium ions were found to be 49.95 and 48.96 mg/g, respectively. The adsorption data also showed that the Freundlich model describes the adsorption isotherm with multilayer coverage well. The highest sorption capacity was observed for the carbon activated with hydrogen peroxide and was expected due to the large surface area. The proposed adsorbent thus represents a cost-effective material that can be considered as a viable alternative for the effective adsorption of manganese and chromium ions from water samples. The experimental conditions and the method used also make the avocado seed waste a suitable material for environmental monitoring.

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用于吸附水中锰和铬离子的新型高锰酸盐和过氧化物碳基鳄梨种子废料
从鳄梨种子废料中提取活性炭,用于吸附受污染水体中的锰和铬离子,以保护水质和人类健康。研究的目的是将原始的鳄梨籽废料转化为碳,然后用过氧化氢、高锰酸钾和硝酸对其进行活化,以促进水介质中锰离子和铬离子的吸附。研究了溶液的 pH 值、反应时间、初始浓度和温度等参数的变化。结果表明,与其他吸附剂相比,用过氧化氢改性的吸附剂具有较大的表面积。在 pH 值为 2 时,锰离子和铬离子的吸附容量达到最大。结果表明,在工艺的初始阶段,锰离子和铬离子的去除率随着接触时间的增加而增加,在达到平衡之前,吸附速率也很快。锰和铬离子的最大吸附容量分别为 49.95 和 48.96 毫克/克。吸附数据还表明,Freundlich 模型很好地描述了多层覆盖的吸附等温线。过氧化氢活化碳的吸附容量最高,这是由于其具有较大的表面积。因此,所提出的吸附剂是一种具有成本效益的材料,可作为有效吸附水样中锰和铬离子的可行替代品。实验条件和所用方法也使鳄梨种子废料成为环境监测的合适材料。
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来源期刊
Case Studies in Chemical and Environmental Engineering
Case Studies in Chemical and Environmental Engineering Engineering-Engineering (miscellaneous)
CiteScore
9.20
自引率
0.00%
发文量
103
审稿时长
40 days
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