空果束(EFB)和压泥去除废水中重金属的潜力研究

M. Mohamad, Nurul Azita Salleh, Mohd Nasrun Mohd Nawi, Md Abdul Kafi, Mohd Azmier Ahmad, Siti Nor Farhana Zakaria, Vignes Chellamuthu
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引用次数: 0

摘要

对有机工业废物(如棕榈油工业产生的空果束(EFB)和榨泥(即制糖业的副产品))的不当管理会导致环境问题。本研究旨在调查榨泥和空果束作为吸附材料在去除废水污染方面的潜力。化学分析结果显示,EFB 样品含有 7.30% 的 SiO2、2.11% 的 Fe2O3、1.91% 的 MgO、28.02% 的 CaO、37.59% 的 K2O、1.45% 的 P2O5、14.51% 的 Cl、4.39% 的 SO3 和 2.38% 的其他元素。而压泥样品则含有 14.32% 的 SiO2、1.39% 的 SO3、81.71% 的 CaO、1.03% 的 Fe2O3 和剩余的 1.56% 的其他化合物。利用 Langmuir 和 Freundlich 等温线确定了压泥和 EFB 的可能吸附容量。利用 Langmuir 和 Freundlich 等温线模型分析了这些样品对镉、铬、铜、铁、锰、镍和锌的吸收情况。通过比较这两种模型,研究发现 Langmuir 模型能更精确地描述 EFB 和压泥样品的吸附过程,与 Freundlich 模型相比,Langmuir 模型的 R2 值最高。研究结果表明,EFB 和榨泥具有作为活性材料吸附重金属的潜力,这就需要认识到重新利用这些经济、可持续废物材料的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the Potential of Empty Fruit Bunch (EFB) and Pressmud for the Removal of Heavy Metals from Wastewater
Improper management of organic industrial wastes, such as empty fruit bunch (EFB) from the palm oil industry and pressmud, i.e., a by-product of the sugar refinery industry can lead to environmental problems. This study aims to investigate the potential of pressmud and EFB as adsorbent materials in wastewater pollution removal. The chemical analysis in this study revealed that the EFB sample contained 7.30% of SiO2, 2.11% of Fe2O3, 1.91% of MgO, 28.02% of CaO, 37.59% of K2O, 1.45% of P2O5, 14.51% of Cl, 4.39% of SO3, and 2.38% of other elements. Meanwhile, the pressmud sample contained 14.32% of SiO2, 1.39% of SO3, 81.71% of CaO, 1.03% of Fe2O3, and the remaining 1.56% of other compounds. The possible adsorption capacities of pressmud and EFB were determined using the Langmuir and Freundlich isotherms. The absorption of Cd, Cr, Cu, Fe, Mn, Ni, and Zn in these samples was analyzed using the Langmuir and Freundlich isotherm models. By comparing both models, the research revealed that the Langmuir model provided a more precise description of the adsorption process for the EFB and pressmud samples and was competently compared to the Freundlich model, as indicated by the highest R2 values. The results indicate the potential of EFB and pressmud as promising reactive materials for heavy metal adsorption, and this involves recognizing possibilities for repurposing these economical and sustainable waste materials.
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