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负载微藻/氧化锌纳米颗粒的交联壳聚糖/明胶珠用于吸附水中致癌性双酚A污染物

Cross-Linked Chitosan/Gelatin Beads Loaded with Microalgae/Zinc Oxide Nanoparticles for Adsorbing Carcinogenic Bisphenol-A Pollutant from Water.

作者信息

Ali Hazim M, Ibrahim Omar M, Ali Ahmed S M, Mohamed Mahmoud A, Ghareeb Rehab Y, Hafez Elsayed E, El-Aassar Mohamed R

机构信息

Chemistry Department, College of Science, Jouf University, Sakaka-2014, Saudi Arabia.

Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110, United States.

出版信息

ACS Omega. 2022 Jul 26;7(31):27239-27248. doi: 10.1021/acsomega.2c01985. eCollection 2022 Aug 9.

Abstract

Water polluted by phenolic compounds is a global threat to health and the environment; accordingly, we prepared a green novel sorbent biological system from a chitosan (CS), gelatin (GT), and freshwater microalgae (m-Alg) composite impregnated with zinc oxide nanoparticles (ZnO-NPs) for the remediation of bisphenol-A (BPA) from water. was selected to be one of the constituents of the prepared composite because of its high capability in phytoremediation. The morphology and the structure of CS/GTm-Alg/ZnO beads were characterized by SEM, FTIR, XRD, and TGA. Different monitoring experimental conditions, such as contact time, pH, BPA concentration, and sorbent dosage, were optimized. The optimum conditions for the adsorption process showed outstanding removal efficiency toward BPA at pH 4.0, contact time 40.0 min, and 40.0 mg L BPA initial concentration. Langmuir, Freundlich, and Temkin isotherm models have been studied for adsorption equilibrium, and the best fit is described by the Langmuir adsorption isotherm. The adsorption kinetics has been studied using pseudo-first-order (PFO), pseudo-second-order (PSO), Elovich, and intraparticle diffusion (IPD) models. The pseudo-second-order kinetic model shows the optimum experimental fit. The monolayer adsorption capacity of the prepared CS/GTm-Alg/ZnO for BPA was determined to be 38.24 mg g. The prepared CS/GT*m-Alg/ZnO beads show advantageous properties, such as their high surface area, high adsorption capacity, reusability, and cost-effectiveness.

摘要

受酚类化合物污染的水对健康和环境构成全球威胁;因此,我们制备了一种绿色新型吸附剂生物系统,该系统由壳聚糖(CS)、明胶(GT)和浸渍有氧化锌纳米颗粒(ZnO-NPs)的淡水微藻(m-Alg)复合材料组成,用于从水中去除双酚A(BPA)。由于其在植物修复方面的高能力,m-Alg被选为制备的复合材料的成分之一。通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)和热重分析(TGA)对CS/GTm-Alg/ZnO珠的形态和结构进行了表征。优化了不同的监测实验条件,如接触时间、pH值、BPA浓度和吸附剂用量。吸附过程的最佳条件显示,在pH值为4.0、接触时间为40.0分钟和初始BPA浓度为40.0 mg/L时,对BPA具有出色的去除效率。研究了Langmuir、Freundlich和Temkin等温线模型用于吸附平衡,Langmuir吸附等温线描述了最佳拟合。使用伪一级(PFO)、伪二级(PSO)、Elovich和颗粒内扩散(IPD)模型研究了吸附动力学。伪二级动力学模型显示了最佳的实验拟合。制备的CS/GTm-Alg/ZnO对BPA的单层吸附容量测定为38.24 mg/g。制备的CS/GT*m-Alg/ZnO珠具有诸如高表面积、高吸附容量、可重复使用性和成本效益等有利特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8190/9366769/0f3a1c931611/ao2c01985_0001.jpg

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