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用于更环保高效生物吸附净化汞毒物的可重复使用壳聚糖负载硫化镍微球的研制

Development of reusable chitosan-supported nickel sulfide microspheres for environmentally friendlier and efficient bio-sorptive decontamination of mercury toxicant.

作者信息

Han Yonghong, Tao Juan, Khan Adnan, Khan Afrasiab, Ali Nisar, Malik Sumeet, Yu Chunhao, Yang Yong, Jesionowski Teofil, Bilal Muhammad

机构信息

Department of Pharmacy and Traditional Chinese Pharmacy, Jiangsu College of Nursing, Huaian, Jiangsu, 223005, People's Republic of China.

Institute of Chemical Sciences, University of Peshawar, Peshawar-Khyber Pakhtunkhwa, 25120, Pakistan.

出版信息

Environ Sci Pollut Res Int. 2023 Apr;30(16):47077-47089. doi: 10.1007/s11356-022-24563-8. Epub 2023 Feb 3.

Abstract

Mercury emissions from the industrial sector have become an undeniable concern for researchers due to their toxic health effects. Efforts have been made to develop green, efficient, and reliable methods for removal of mercury from wastewater. Sorption process promises fruitful results for the decontamination of cations from wastewater. Among the number of used sorbents, metal sulfides have been emerged as an appropriate material for removing toxic metals that possess good affinity due to sulfur-based active sites for Hg through "Lewis's acid-based soft-soft interactions." Herein, nickel-sulfide nanoparticles were synthesized, followed by their incorporation in chitosan microspheres. FTIR analysis confirmed the synthesis of nickel sulfide-chitosan microspheres (NiS-CMs) displaying sharp bands for multiple functional groups. XRD analysis showed that the NiS-CMs possessed a crystallite size of 42.1 nm. SEM analysis indicated the size of NiS-CMs to be 950.71 μm based on SEM micrographs. The sorption of mercury was performed using the NiS-CMs, and the results were satisfactory, with a sorption capacity of 61 mg/g at the optimized conditions of pH 5.0, 80 ppm concentration, in 60 min at 25 °C. Isothermal models and kinetics studies revealed that the process followed pseudo-second-order kinetics and the Langmuir isothermal model best fitted to experimental data. It was concluded that the NiS-CMs have emerged as the best choice for removing toxic mercury ions with a positive impact on the environment.

摘要

由于工业部门排放的汞对健康具有毒性影响,已成为研究人员不可忽视的问题。人们一直在努力开发绿色、高效且可靠的方法来去除废水中的汞。吸附过程有望为从废水中去除阳离子带来丰硕成果。在众多使用过的吸附剂中,金属硫化物已成为一种合适的材料,可用于去除有毒金属,因其基于硫的活性位点通过“基于路易斯酸的软-软相互作用”对汞具有良好的亲和力。在此,合成了硫化镍纳米颗粒,随后将其掺入壳聚糖微球中。傅里叶变换红外光谱(FTIR)分析证实了硫化镍-壳聚糖微球(NiS-CMs)的合成,显示出多个官能团的尖锐谱带。X射线衍射(XRD)分析表明,NiS-CMs的微晶尺寸为42.1纳米。扫描电子显微镜(SEM)分析根据SEM显微照片表明NiS-CMs的尺寸为950.71微米。使用NiS-CMs进行汞的吸附,结果令人满意,在pH 5.0、浓度80 ppm、25℃下60分钟的优化条件下,吸附容量为61毫克/克。等温模型和动力学研究表明,该过程遵循准二级动力学,Langmuir等温模型最适合实验数据。得出的结论是,NiS-CMs已成为去除有毒汞离子的最佳选择,对环境具有积极影响。

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