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用于从工业废水中去除重金属Cr(VI)的高容量表面工程MXene复合材料的开发。

Development of high-capacity surface-engineered MXene composite for heavy metal Cr (VI) removal from industrial wastewater.

作者信息

Asif Umair Ali, Mahmood Khalid, Naqvi Salman Raza, Mehran Muhammad Taqi, Noor Tayyaba

机构信息

Laboratory of Alternative Fuels and Sustainability, School of Chemical & Materials Engineering, National University of Sciences & Technology, H-12, Islamabad, Pakistan.

Department of Chemical & Polymer Engineering, University of Engineering & Technology Lahore, Faisalabad Campus, Khurrianwala - Makkuana By-Pass, Faisalabad, Pakistan.

出版信息

Chemosphere. 2023 Jun;326:138448. doi: 10.1016/j.chemosphere.2023.138448. Epub 2023 Mar 20.

Abstract

The substantial quantity of Cr(VI) contaminants in the aqueous atmosphere is a major environmental fear that cannot be overlooked. For the first time, MXene and chitosan-coated polyurethane foam have been employed for wastewater treatment, including heavy metal ions (Cr (VI)) through a fixed-bed column study. It is also the most inexpensive, lightweight, and globally friendly material tested. The Mxene and chitosan-coated polyurethane foam hybrid materials were thoroughly investigated using FTIR (Fourier transform infrared), SEM (scanning electron microscope), XPS (X-ray photoelectron spectroscopy) and XRD (X-ray diffraction). The presence of the rough surface and the pore creation in the Mxene- MX@CS@PUF should rise its surface area, which is useful to interact the surface-active assembly of MX@CS@PUF and the Cr(VI) contaminations in the aqueous solution. With the help of the ion exchange mechanism and electrostatic contact, negatively charged MXene hexavalent ions were being adsorbed on the surface. MXene and chitosan have been coated on PUF foam in the form of three different layers, which shows the highest adsorption capacity, where up to ∼70% Cr (VI) was removed in the first 10 min and more than 60% elimination after 3 h when the metal ion concentration was 20 ppm. The electrostatic interaction between the negative charge MXene and the positive charge chitosan on the surface of PUF, which was absent in MX@PUF, is accountable for the high removal efficiency. This was done through a sequence of fixed-bed column studies, which took place in the continuous flowing of wastewater.

摘要

大气水体中大量的六价铬污染物是一个不容忽视的重大环境问题。首次将MXene和壳聚糖包覆的聚氨酯泡沫用于废水处理,通过固定床柱研究处理包括重金属离子(六价铬)在内的污染物。它也是所测试的最廉价、轻质且全球友好型的材料。使用傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、X射线光电子能谱(XPS)和X射线衍射(XRD)对MXene和壳聚糖包覆的聚氨酯泡沫混合材料进行了全面研究。MXene - MX@CS@PUF中粗糙表面的存在和孔隙的形成应会增加其表面积,这有利于MX@CS@PUF的表面活性组件与水溶液中的六价铬污染物相互作用。借助离子交换机制和静电接触,带负电荷的MXene六价离子被吸附在表面。MXene和壳聚糖以三种不同层的形式包覆在PUF泡沫上,其显示出最高的吸附容量,当金属离子浓度为20 ppm时,在前10分钟内去除了高达约70%的六价铬,3小时后去除率超过60%。PUF表面带负电荷的MXene和带正电荷的壳聚糖之间的静电相互作用(MX@PUF中不存在这种相互作用)是高去除效率的原因。这是通过一系列固定床柱研究完成的,这些研究是在废水连续流动的情况下进行的。

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