用于废水中染料生物吸附的壳聚糖和聚乙烯生物复合材料

Oluwaseun Adekoya Adelaja
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摘要

本研究探讨了一种由低密度聚乙烯-壳聚糖纳米颗粒(LDPE/CHNP)制成的生物复合吸附剂去除废水中刚果红和水晶紫染料的潜力。实验在室温下进行,研究 pH 值、接触时间、初始浓度、吸附剂用量和温度对吸附过程的影响。结果表明,pH 值为 8 时刚果红和水晶紫的吸附量最大,吸附过程在接触的前 30 分钟内迅速完成,吸附量超过 90%,在每分钟 150 转的搅拌下达到平衡。利用 Langmuir、Freundlich 和等温线模型对刚果红和水晶紫染料的生物吸附进行了描述。结果发现,Langmuir 模型更适合平衡数据,相关系数为 0.99,最大吸附容量为 27.1 毫克/克。根据这些结果,可以得出结论:由低密度聚乙烯-壳聚糖纳米颗粒(LDPE/CHNP)制成的生物复合吸附剂有可能成为一种有效而丰富的替代生物质,用于去除废水中的这些染料。LDPE/CHNP 生物复合吸附剂可用作废水中色素污染的修复方法。
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Bio-composite of chitosan and polyethylene for the biosorption of dye in wastewater
This study investigated the potential of a biocomposite adsorbent made of low-density polyethylene-chitosan nanoparticles (LDPE/CHNP) for removing Congo red and Crystal violet dyes from wastewater. Batch experiments were conducted at room temperature to study the effects of pH, contact time, initial concentration, adsorbent dosage, and temperature on the adsorption process. The results showed that the maximum sorption of Congo red and Crystal violet occurred at pH 8. The adsorption process was rapid in the first 30 minutes of contact, with more than 90% uptake, and equilibrium was achieved with 150 rpm agitation. The biosorption of Congo red and Crystal violet dyes was described using Langmuir, Freundlich, and isotherm models. The Langmuir model was found to fit the equilibrium data better, with a correlation coefficient of 0.99 and a maximal adsorption capacity of 27.1 mg/g. Based on these results, it can be concluded that the biocomposite adsorbent made of low density polyethylene-chitosan nanoparticles (LDPE/CHNP) has the potential to be an effective and abundant alternative biomass for removing these dyes from wastewater. The LDPE/CHNP biocomposite adsorbent could be applied as a remediation method for color contamination in wastewater.
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