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Enhancement of Industrial Effluents Quality by Using Nanocomposite Mg/Al LDH Ultrafiltration Membranes

机译:利用纳米复合材料Mg / Al LDH超滤膜来提高工业污水质量

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In this paper, Mg-Al-Acr LDH and Mg-Al-Amps LDH nanocomposites were synthesized via reacting of acrylic acid and 2-acrylamido2-methylpropansulfonic acid with Mg-Al LDH by chelation technique. The nanocomposite LDHs were applied as a hydrophilic fillers for modification of polysulfone (PSf) ultrafiltration membrane. The Mg-Al LDH/PSf, Mg-Al-Acr LDH/PSf and Mg-Al-Amps LDH/PSf membranes were fabricated using induced phase-blending method. The chelated LDHs and UF membranes were characterized using Atomic force microscopy, scanning electron microscopy, Fourier transform infrared spectroscopy, X-ray diffraction and thermogravimetric analyses. In contrast to the neat PSf film, the Mg-Al-Acr LDH/PSf and Mg-Al-Amps LDH/PSf nanocomposite membranes exhibited higher pore size, porosity, hydrophilicity and lower surface roughness. The finger-like structures demonstrated for neat PSf membrane in cross-section SEM images were collapsed in Mg-Al-Acr LDH/PSf and Mg-Al-Amps LDH/PSf nanocomposite membranes. The synthesized PSf films were optimized in the presence of suitable content of hydrophilic LDHs (0.1 wt%). Not only the modified PSf membranes, when compared with the neat membrane, show a higher pure water flux of 300 and 390 l m(-2) h for 0.1 wt% Mg-Al-Acr LDH/PSf and Mg-Al-Amps LDH/PSf membranes, respectively, but also the antifouling of the optimal nanocomposite films was enhanced. Moreover, the TOC of the wastewater decreased from 140.8 to 44 and 30.8 mg l(-1), correspondingly. Finally, with a higher water permeation and humic acid rejection, those equipped films turned to be more attractive and excellent for effluent features enhancement.
机译:本文通过螯合技术通过用Mg-Al LDH的丙烯酸和2-丙基酰胺2-甲基丙二酸反应合成Mg-Al-ACR LDH和Mg-Al-AMPS LDH纳米复合材料。将纳米复合物LDHS用作亲水填料,用于改性聚砜(PSF)超滤膜。使用诱导的相混法制造Mg-Al LDH / PSF,Mg-Al-ACR LDH / PSF和Mg-Al-AMPSLDH / PSF膜。使用原子力显微镜,扫描电子显微镜,傅里叶变换红外光谱,X射线衍射和热重分析来表征螯合的LDH和UF膜。与纯净的PSF膜形成对比,Mg-Al-ACR LDH / PSF和Mg-Al-AMPSLDH / PSF纳米复合膜表现出较高的孔径,孔隙率,亲水性和较低的表面粗糙度。在横截面SEM图像中用于整齐PSF膜的指状结构在Mg-Al-ACR LDH / PSF和Mg-Al-AMPSLDH / PSF纳米复合膜中塌陷。合成的PSF膜在合适的亲水性LDH(0.1wt%)的存在下进行了优化。与纯膜相比,不仅改性的PSF膜,显示出300和390升(-2)H的纯净水通量为0.1wt%Mg-Al-Al-ActLDH / PSF和Mg-Al-AMPS LDH / PSF膜分别增强了最佳纳米复合膜的防污。此外,污水的TOC相应地从140.8〜44和30.8mg L(-1)减少。最后,随着较高的水渗透和腐烂的酸抑制,那些装备的薄膜转身更具吸引力和优异的流出功能增强。

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