首页> 外文期刊>Chemistry Select >Facile Surface Modification of Glass-Fiber Membrane with Silylating Reagent through Chemical Bonding for the Selective Separation and Recycling of Diverse Dyes from Aqueous Solutions
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Facile Surface Modification of Glass-Fiber Membrane with Silylating Reagent through Chemical Bonding for the Selective Separation and Recycling of Diverse Dyes from Aqueous Solutions

机译:通过化学键合化玻璃纤维膜的玻璃纤维膜的简便表面修饰,从而选择性分离和回收从水溶液中分离和回收不同

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摘要

3-(Trimethoxysilyl)-1-propanamine (APTMS) modified glass fiber membrane (APTMS-GF) was prepared via chemical bonding with different volume ratios (APTMS : methanol=1:20, 1:10, 1:5), which was called APTMS-GF-1,-2 and-3, respectively. For congo red (CR) with the concentrations ranging from 5 to 45 mg L~(-1), the removal efficiencies were up to above 95% by filtration with APTMS-GF composite membranes, but there was no distinct difference in removal capacity with increasing the volume ratio of APTMS. More importantly, on account of the electrostatic interaction, APTMS-GF composite membrane could selectively separate and recycle neutral bromophenol blue (BPB), cationic methylene blue (MB) and anionic methyl orange (MO) from binary systems including BPB/CR, MB/CR, and MO/CR, respectively. Under the static adsorption, the adsorption process of CR on the APTMS-GF composite membrane was better fitting with the pseudo-second-order kinetic model (R2=0.992) due to the electrostatic interaction, which was confirmed by the effects of inorganic ions and pH in solution. The structural advantage of glass fiber membrane with micropores made all of filtration fulfilled under atmospheric pressure in comparison to the reported membranes. As a result, this work provides a feasible method for fabricating the economic membrane in removing dyes.
机译:3-(三甲氧基二)-1-丙烷(APTMS)修饰的玻璃纤维膜(APTMS-GF)是通过具有不同体积比(APTMS:甲醇= 1:20,1:10,1:5)的化学键合制备的,这是分别称为APTMS-GF-1,-2和-3。对于浓度为5至45 mg l〜(-1)的刚果红(CR),通过使用APTMS-GF复合膜过滤,去除效率最高至95%以上,但在移除能力上没有明显的差异增加APTM的体积比。更重要的是,由于静电相互作用,APTMS-GF复合膜可以选择性分离和回收中性溴酚蓝(BPB),阳离子甲基蓝(MB)和阴离子甲基橙(MO)与包括BPB/CR,MB/CR,MB/CR/CR/CR,MB/CR/CR,MO CR和MO​​/CR分别。在静态吸附下,Cr在APTMS-GF复合膜上的吸附过程更好地与伪一阶动力学模型(R2 = 0.992)更好地拟合,这是由于静电相互作用所致,这是由无机离子和无机离子和无机离子和无机离子的影响所证实的溶液中的pH。与报道的膜相比,与微孔的玻璃纤维膜的结构优势使所有过滤在大气压力下实现。结果,这项工作提供了一种在去除染料中制造经济膜的可行方法。

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