Chitosan-coated coconut shell composite: A solution for treatment of Cr(III)-contaminated tannery wastewater

IF 6.3 3区 工程技术 Q1 ENGINEERING, CHEMICAL Journal of the Taiwan Institute of Chemical Engineers Pub Date : 2025-01-01 Epub Date: 2024-04-06 DOI:10.1016/j.jtice.2024.105478
Tonni Agustiono Kurniawan , Fatima Batool , Ayesha Mohyuddin , Hui Hwang Goh , Mohd Hafiz Dzarfan Othman , Faissal Aziz , Abdelkader Anouzla , Hussein E. Al-Hazmi , Kit Wayne Chew
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Abstract

Background

Tannery industry generates a large amount of Cr(III)-contaminated wastewater daily. Unless properly treated, not only this effluent contaminates the water body, but also damages the environment and threatens public health. This batch study investigates the feasibility of chitosan-coated coconut shells as a low-cost material for removing Cr(III) from tannery wastewater. Both chitosan and coconut shell (CS) waste are abundantly available from local agricultural and fishery industries.

Methods

To enhance its treatment performance for Cr(III) removal, the CS was coated with chitosan as a composite. To sustain its cost-effectiveness, the saturated composite was regenerated with HNO3. Its performance for Cr(III) removal was evaluated and compared to other low-cost adsorbents in previous work.

Findings

At the same initial concentration of 20 mg/L, it was found that the composite had a higher Cr(III) removal (97%) than the chitosan alone under the optimized conditions of 4 g/L of dose, pH 6.5, 200 rpm of agitation speed, and 1 h of reaction time. The isotherm of Cr(III) removal by the adsorbents followed the Langmuir model, while the pseudo-second order reaction was representative to simulate the adsorption data. The Cr(III) removal by the composite was based on attractive columbic forces between the negative charge of the adsorbent's surface and the positive charge of the metal cation. The negative value of ΔG thermodynamic parameter suggests the spontaneous nature of adsorption. The efficiency of machine learning regression (MLR) model was assessed in predicting the experimental data of adsorption. In spite of promising results, treated effluents still could not comply with the required limit of discharge standards of less than 0.5 mg/L mandated by local legislation. Therefore, a subsequent treatment using activated sludge is required. Overall, this work reveals a contribution of unused resources from the coconut and shrimp industries in the form of composite for protecting the aquatic environment.

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壳聚糖椰壳复合材料:处理受铬(III)污染的制革废水的解决方案
制革工业每天产生大量受铬(III)污染的废水。如果不加以适当处理,这些污水不仅会污染水体,而且还会破坏环境,威胁公众健康。本研究考察了壳聚糖包覆椰子壳作为一种低成本材料去除制革废水中Cr(III)的可行性。壳聚糖和椰子壳废料在当地的农业和渔业中都有大量的利用。方法采用壳聚糖包被复合材料,以提高其对Cr(III)的去除性能。为了保持其成本效益,饱和复合材料用HNO3再生。对其去除Cr(III)的性能进行了评价,并与其他低成本吸附剂进行了比较。结果表明,在初始浓度为20 mg/L的条件下,在4 g/L的投加量、pH为6.5、搅拌转速为200 rpm、反应时间为1 h的优化条件下,复合材料对Cr(III)的去除率(97%)高于壳聚糖。吸附剂对Cr(III)的吸附等温线符合Langmuir模型,拟二级反应可较好地模拟吸附数据。复合材料对Cr(III)的去除是基于吸附剂表面的负电荷和金属阳离子的正电荷之间的吸引柱力。ΔG热力学参数为负值表明吸附是自发的。评价了机器学习回归(MLR)模型对吸附实验数据的预测效率。尽管取得了可喜的成果,但处理后的废水仍无法达到当地立法规定的低于0.5毫克/升的排放标准。因此,需要使用活性污泥进行后续处理。总的来说,这项工作揭示了椰子和虾产业的未使用资源以复合材料的形式对保护水生环境的贡献。
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来源期刊
CiteScore
9.10
自引率
14.00%
发文量
362
审稿时长
35 days
期刊介绍: Journal of the Taiwan Institute of Chemical Engineers (formerly known as Journal of the Chinese Institute of Chemical Engineers) publishes original works, from fundamental principles to practical applications, in the broad field of chemical engineering with special focus on three aspects: Chemical and Biomolecular Science and Technology, Energy and Environmental Science and Technology, and Materials Science and Technology. Authors should choose for their manuscript an appropriate aspect section and a few related classifications when submitting to the journal online.
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