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用于油水乳液分离的基于Mxene涂层金属网材料的简便制备

Facile fabrication of Mxene coated metal mesh-based material for oil /water emulsion separation.

作者信息

Nazarpour Kalaei Mohammad Reza, Heydarinasab Amir, Rashidi Alimorad, Alaei Mahshad

机构信息

Department of Chemical Engineering, Science and Research Branch, Islamic Azad University, Tehran, Iran.

Department of Chemical Engineering, Science and Research Branch, Islamic Azad University, Tehran, Iran.

出版信息

Ecotoxicol Environ Saf. 2023 Apr 15;255:114824. doi: 10.1016/j.ecoenv.2023.114824. Epub 2023 Mar 24.

DOI:10.1016/j.ecoenv.2023.114824
PMID:36966613
Abstract

The present study was set out to synthesize Mxene (TiCTx) and functionalized Mxene nanoparticles and fabricating Mxene coated stainless steel meshes using the dip-coating methodology to investigate the capability of Mxene nanoparticles in oil-water emulsion separation. O/W mixtures separation with extraordinary 100% of effectiveness and purity using designed grid was observed. Most specifically, Mxene fabricated mesh showed good resistance to corrosive solutions of HCl and NaOH and was used to separate O/W at harsh medium condition with a separation efficiency of more than after 96.0% replicated experiment, and its super-hydrophilicity persisted in spite of the air exposure condition, extreme fluids immersion, or abrasion. The XRD, FTIR, SEM, FESEM, AFM and DLS tests have been performed to characterize the Mxene coating and its effectiveness on the O/W separation. These analyzes confirm the fabricated tough super-hydrophilic stainless-steel mesh explored in this research can basically be utilized as a highly effective useful mesh for O/W fluid separation under different sever circumstances. The XRD pattern of the resulting powder shows a single phase formation of Mxene, the SEM and FESEM images confirms creation of coated mesh with approximately 30 µ pore size, AFM tests verify that structures (both in nm and µm sizes) formation with high RMS (Root Mean Square) roughness values of 0.18 µm and 0.22 µm for Mxene and carboxylic-Mxene coated mesh. The DLS tests prove the droplets size distribution of emulsion has been augmented after several O/W separation, which confirmed the coagulating mechanism of oil droplets once contacting with the Mxene and carboxylic Mxene coatings of the mesh.

摘要

本研究旨在合成MXene(TiCTx)和功能化的MXene纳米颗粒,并采用浸涂法制备MXene涂层不锈钢网,以研究MXene纳米颗粒在油水乳液分离中的能力。观察到使用设计的网格对O/W混合物进行分离,具有非凡的100%的有效性和纯度。最特别的是,MXene制备的网对HCl和NaOH的腐蚀性溶液表现出良好的抗性,并用于在苛刻的介质条件下分离O/W,经过96.0%以上的重复实验后分离效率仍然很高,并且其超亲水性在空气暴露条件、极端流体浸没或磨损的情况下仍然存在。进行了XRD、FTIR、SEM、FESEM、AFM和DLS测试,以表征MXene涂层及其在O/W分离中的有效性。这些分析证实,本研究中制备的坚韧超亲水性不锈钢网基本上可以用作在不同苛刻条件下进行O/W流体分离的高效实用网。所得粉末的XRD图谱显示MXene形成单相,SEM和FESEM图像证实形成了孔径约为30 µm的涂层网,AFM测试验证了MXene和羧基化MXene涂层网的结构(纳米和微米尺寸)形成,其均方根(RMS)粗糙度值分别为0.18 µm和0.22 µm。DLS测试证明,经过几次O/W分离后,乳液的液滴尺寸分布增大,这证实了油滴与网的MXene和羧基化MXene涂层接触时的凝聚机制。

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