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通过实验建模,简便合成生物聚合物修饰的磁性核壳,以增强对外源偶氮染料的去除。

Facile synthesis of biopolymer decorated magnetic coreshells for enhanced removal of xenobiotic azo dyes through experimental modelling.

机构信息

Department of Environmental Science, School of Earth Sciences, Central University of Rajasthan, Ajmer, 305817, Rajasthan, India.

Department of Environmental Science, School of Earth Sciences, Central University of Rajasthan, Ajmer, 305817, Rajasthan, India.

出版信息

Food Chem Toxicol. 2023 Jan;171:113518. doi: 10.1016/j.fct.2022.113518. Epub 2022 Nov 25.

DOI:10.1016/j.fct.2022.113518
PMID:36436617
Abstract

Since contamination of xenobiotics in water bodies has become a global issue, their removal is gaining ample attention lately. In the present study, nZVI was synthesized using chitosan for removal of two such xenobitic dyes, Bromocresol green and (BCG) and Brilliant blue (BB), which have high prevalence in freshwater and wastewater matrices. nZVI functionalization prevents nanoparticle aggregation and oxidation, enhancing the removal of BCG and BB with an efficiency of 84.96% and 86.21%, respectively. XRD, FESEM, EDS, and FTIR have been employed to investigate the morphology, elemental composition, and functional groups of chitosan-modified nanoscale-zerovalent iron (CS@nZVI). RSM-CCD model was utilized to assess the combined effect of five independent variables and determine the best condition for maximum dye removal. The interactions between adsorbent dose (2-4 mg), pH (4-8), time (20-40 min), temperature (35-65 C), and initial dye concentration (40-60 mg/L) was modeled to study the response, i.e., dye removal percentage. The reaction fitted well with Langmuir isotherm and pseudo-first-order kinetics, with a maximum q value of 426.97 and 452.4 mg/g for BCG and BB, respectively. Thermodynamic analysis revealed the adsorption was spontaneous, and endothermic in nature. Moreover, CS@nZVI could be used up to five cycles of dye removal with remarkable potential for real water samples.

摘要

由于水体内污染物的污染已成为全球性问题,最近它们的去除受到了广泛关注。在本研究中,使用壳聚糖合成了 nZVI,以去除两种此类异源染料,溴甲酚绿(BCG)和亮蓝(BB),它们在淡水和废水基质中广泛存在。nZVI 的功能化可防止纳米颗粒聚集和氧化,从而提高 BCG 和 BB 的去除效率,分别达到 84.96%和 86.21%。XRD、FESEM、EDS 和 FTIR 用于研究壳聚糖修饰的纳米零价铁(CS@nZVI)的形态、元素组成和官能团。RSM-CCD 模型用于评估五个独立变量的综合影响,并确定最大染料去除的最佳条件。研究了吸附剂剂量(2-4mg)、pH(4-8)、时间(20-40min)、温度(35-65°C)和初始染料浓度(40-60mg/L)之间的相互作用,以研究响应,即染料去除百分比。反应很好地符合 Langmuir 等温线和伪一级动力学,BCG 和 BB 的最大 q 值分别为 426.97 和 452.4mg/g。热力学分析表明吸附是自发的,并且是吸热的。此外,CS@nZVI 可用于去除染料的五个循环,具有去除实际水样的巨大潜力。

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