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利用 sp. MK-11 的干生物量吸附镉和铅:动力学和等温线研究。

Biosorption of Cadmium and Lead by Dry Biomass of sp. MK-11: Kinetic and Isotherm Study.

机构信息

Department of Plant Sciences, Quaid-i-Azam University, Islamabad 45320, Pakistan.

Department of Chemistry, COMSATS University, Islamabad 45550, Pakistan.

出版信息

Molecules. 2023 Mar 1;28(5):2292. doi: 10.3390/molecules28052292.

Abstract

Cadmium (Cd) and lead (Pb) are global environmental pollutants. In this study, sp. MK-11 was used as an environmentally safe, economical, and efficient biosorbent for the removal of Cd and Pb ions from synthetic aqueous solutions. sp. MK-11 was identified on a morphological and molecular basis using light microscopic, 16S rRNA sequences and phylogenetic analysis. Batch experiments were performed to determine the most significant factors for the removal of Cd and Pb ions from the synthetic aqueous solutions using dry sp. MK1 biomass. The results indicated that the maximum biosorption of Pb and Cd ions was found under the conditions of 1 g of dry sp. MK-11 biomass, 100 mg/L of initial metal concentrations, and 60 min contact time at pH 4 and 5 for Pb and Cd, respectively. Dry sp. MK-11 biomass samples before and after biosorption were characterized using FTIR and SEM. A kinetic study showed that a pseudo second order kinetic model was well fitted rather than the pseudo first order. Three isotherm models Freundlich, Langmuir, and Temkin were used to explain the biosorption isotherms of metal ions by sp. MK-11 dry biomass. Langmuir isotherm, which explains the existence of monolayer adsorption, fitted well to the biosorption process. Considering the Langmuir isotherm model, the maximum biosorption capacity (q) of sp. MK-11 dry biomass was calculated as 75.757 and 83.963 mg g for Cd and Pb, respectively, which showed agreement with the obtained experimental values. Desorption investigations were carried out to evaluate the reusability of the biomass and the recovery of the metal ions. It was found that the desorption of Cd and Pb was above 90%. The dry biomass of sp. MK-11 was proven to be efficient and cost-effective for removing Cd and especially Pb metal ions from the aqueous solutions, and the process is eco-friendly, feasible, and reliable.

摘要

镉(Cd)和铅(Pb)是全球性的环境污染物。在这项研究中,使用 sp. MK-11 作为一种环境安全、经济且高效的生物吸附剂,从合成水溶液中去除 Cd 和 Pb 离子。根据形态学和 16S rRNA 序列及系统发育分析,确定 sp. MK-11。使用干燥的 sp. MK1 生物质进行批实验,以确定从合成水溶液中去除 Cd 和 Pb 离子的最显著因素。结果表明,在 1 g 干燥的 sp. MK-11 生物质、100 mg/L 的初始金属浓度和 pH 值为 4 和 5 时,Pb 和 Cd 的接触时间分别为 60 min,Pb 和 Cd 离子的最大生物吸附量最大。用 FTIR 和 SEM 对吸附前后的干燥 sp. MK-11 生物质样品进行了表征。动力学研究表明,拟二级动力学模型比拟一级动力学模型更适合。Freundlich、Langmuir 和 Temkin 三种等温模型用于解释 sp. MK-11 干燥生物质对金属离子的吸附等温线。Langmuir 等温线解释了单层吸附的存在,很好地拟合了吸附过程。考虑到 Langmuir 等温模型,sp. MK-11 干燥生物质的最大吸附容量(q)分别计算为 75.757 和 83.963 mg g 用于 Cd 和 Pb,这与实验获得的值一致。进行了脱附研究,以评估生物质的可重复使用性和金属离子的回收情况。结果发现,Cd 和 Pb 的脱附率均在 90%以上。证明 sp. MK-11 干燥生物质从水溶液中去除 Cd 和特别是 Pb 金属离子是高效且经济有效的,该过程环保、可行且可靠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6398/10005389/d7cefa062fc5/molecules-28-02292-g001.jpg

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