tms- edta功能化Ti3C2Tx去除工业废水中的镍离子:实验和统计物理建模

IF 11.3 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Syed Asad Raza Kazmi , Syed Muhammad Husnain , Abdul Rehman Khan , Tariq M. Qureshi , Tarek Lemaoui , Inas M. AlNashef , Hassan A. Arafat , Faisal Shahzad
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引用次数: 0

摘要

本研究采用 tms-EDTA 对 Ti3C2Tx MXene 进行表面改性(EDTA@MXene),以开发一种高效的吸附剂,用于吸附受污染水中的二价重金属阳离子,如 Cd²⁺、Cu²⁺、Ni²⁺、Pb²⁺ 和 Zn²⁺。与原始 MXene 相比,EDTA@MXene 对这些离子的吸附能力明显增强。以镍离子(Ni²⁺)为模型吸附物,EDTA@MXene 表现出卓越的去除效率,与原始 MXene 的 61.4 毫克/克相比,EDTA@MXene 的最大吸附容量达到 249.5 毫克/克,并且具有快速动力学特性,在 30 分钟内就能达到平衡。结果表明,Ni²⁺的吸附遵循伪二阶动力学模型,平衡数据符合 Langmuir 和 Freundlich 等温线模型。由于经典的吸附模型对吸附机理的基本原理仍无定论,因此随后应用了先进的统计物理模型进行深入研究。研究结果表明,Ni²⁺ 离子以非平行方向吸附在表面。吸附过程是可逆的、内热的,主要由物理相互作用驱动,温度越高,吸附能力越强。EDTA@MXene 具有极佳的重复利用率,经过五个再生周期后仍能保持较高的再生效率(80%)。此外,它对电镀镍废水中的镍⁺离子也有很高的吸附能力,凸显了其在处理受金属污染的工业废水方面的实际应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Removal of nickel ions from industrial wastewater using tms-EDTA-functionalized Ti3C2Tx: Experimental and statistical physics modeling

Removal of nickel ions from industrial wastewater using tms-EDTA-functionalized Ti3C2Tx: Experimental and statistical physics modeling
This study investigates the surface modification of Ti3C2Tx MXene using tms-EDTA (EDTA@MXene) to develop an efficient adsorbent for divalent heavy metal cations, such as Cd²⁺, Cu²⁺, Ni²⁺, Pb²⁺, and Zn²⁺, from contaminated water. EDTA@MXene showed significantly enhanced adsorption capacities for these ions compared to pristine MXene. Using nickel ion (Ni²⁺) as a model adsorbate, EDTA@MXene demonstrated remarkable removal efficiency, reaching a maximum adsorption capacity of 249.5 mg/g as compared to the 61.4 mg/g of pristine MXene with fast kinetics and attaining equilibrium within 30 min. The results indicated that Ni²⁺ adsorption followed a pseudo-second-order kinetic model, with equilibrium data fitting both Langmuir and Freundlich isotherm models. As the classical adsorption models remained inconclusive on the underlying adsorption mechanisms, advanced statistical physics models were subsequently applied for deeper investigation. The findings revealed that Ni²⁺ ions adsorbed onto the surface in a non-parallel orientation. The adsorption process was reversible, endothermic, and driven mainly by physical interactions, with higher temperatures favoring greater adsorption capacity. EDTA@MXene demonstrated excellent reusability, maintaining high (>80 %) regeneration efficiency after five regeneration cycles. It also exhibited a high adsorption capacity for Ni²⁺ ions from nickel electroplating wastewater, highlighting its potential for real application in the treatment of metal-contaminated industrial wastewater.
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来源期刊
Journal of Hazardous Materials
Journal of Hazardous Materials 工程技术-工程:环境
CiteScore
25.40
自引率
5.90%
发文量
3059
审稿时长
58 days
期刊介绍: The Journal of Hazardous Materials serves as a global platform for promoting cutting-edge research in the field of Environmental Science and Engineering. Our publication features a wide range of articles, including full-length research papers, review articles, and perspectives, with the aim of enhancing our understanding of the dangers and risks associated with various materials concerning public health and the environment. It is important to note that the term "environmental contaminants" refers specifically to substances that pose hazardous effects through contamination, while excluding those that do not have such impacts on the environment or human health. Moreover, we emphasize the distinction between wastes and hazardous materials in order to provide further clarity on the scope of the journal. We have a keen interest in exploring specific compounds and microbial agents that have adverse effects on the environment.
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