Recycling leather buffing dust into activated carbon for efficient turbidity removal from tannery wastewater

Md Mohsin , Md. Suzaul Karim , Md Ashikur Rahaman Noyon , Mst. Farhana Yeasmin , Md Mojeb Ali , Md. Elias Uddin
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Abstract

Leather buffing dust (BD), a solid waste generated from the leather industry, was utilized as a raw material for synthesizing activated carbon (AC) through ZnCl2 activation and pyrolysis. The main focus of this study was to prepare an adsorbent with low price and high efficiency to remove turbidity from tannery wastewater to contribute to the waste valorization and circular economy practices. Prepared AC were characterized with FTIR, XRD and SEM tests to confirm functionality of surfaces, modification of structure and also pore morphology. To determine turbidity removal under different conditions, batch adsorption analysis was conducted. The maximum removal efficiency attained by the BD derived AC in removing turbidity was 98.39 % at pH 5, 2 g/L dosage and 25 min of contact time. Moreover, the adsorption process significantly improved water quality by lowering total dissolved solids, chemical oxygen demand and total suspended solids up to 29.53, 78.28 and 91.13 % respectively. The adsorption kinetics followed pseudo- second-order model and equilibrium data fit well with the Langmuir isotherm indicating monolayer chemisorption. The findings indicate that leather BD can be effectively repurposed into a functional adsorbent, offering both environmental and industrial benefits for tannery wastewater treatment.
回收皮革抛光粉尘为活性炭有效去除浊度从制革厂废水
以皮革抛光粉尘(BD)为原料,经ZnCl2活化热解制备活性炭(AC)。本研究的重点是制备一种廉价高效的吸附剂来去除制革废水中的浊度,为废物增值和循环经济的实践做出贡献。用FTIR、XRD和SEM等测试手段对所制备的活性炭进行了表征,以确定其表面功能、结构修饰和孔隙形态。为了确定不同条件下的浊度去除率,进行了间歇吸附分析。在pH为5、投加量为2 g/L、接触时间为25 min的条件下,BD衍生AC对浊度的最大去除率为98.39 %。吸附过程使总溶解固形物、化学需氧量和总悬浮物分别降低29.53%、78.28%和91.13% %,显著改善了水质。吸附动力学符合准二级模型,平衡数据与Langmuir等温线吻合较好,表明为单层化学吸附。研究结果表明,皮革BD可以有效地转化为功能性吸附剂,为制革废水处理提供环境和工业效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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