首页> 外文期刊>Journal of Polymers and the Environment >Microfluidic Fabrication of Nanoparticles Based on Ethyl Acrylate-Functionalized Chitosan for Adsorption of Methylene Blue from Aqueous Solutions
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Microfluidic Fabrication of Nanoparticles Based on Ethyl Acrylate-Functionalized Chitosan for Adsorption of Methylene Blue from Aqueous Solutions

机译:基于乙基丙烯酸酯官能化壳聚糖的纳米粒子的微流体制造,从水溶液吸附亚甲基蓝

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摘要

The adsorption of nanoparticle (NP)-based adsorbents especially those made of polymers to remove dyes as toxic substances from pollutants is yet remained as a critical issue. The objective of this work was to prepare microfluidic (MF) fabrication of NPs based on ethyl acrylate (EA)-functionalized chitosan (CS) for methylene blue (MB) dye removal from aqueous solutions. For this purpose, a series of experiments such as FTIR, SEM alongside DLS, and UV-vis spectrophotometry were carried out to investigate the physicochemical properties of the samples. The FTIR spectra showed that the amine (-NH2) and hydroxyl (-OH) groups on CS structure were replaced with EA, appropriately. The SEM and DLS results depicted that EA-functionalized CS NPs fabricated using MF technique had uniform shapes, and the diameters as small as 70nm compared to those samples produced via bulk mixing (BM) method (similar to 300nm). Moreover, the surface charge of MF-assisted CS NPs after functionalization exhibited the lower zeta potential value (similar to+11) than that of samples based on BM (similar to+14) due to occurring the laminar flow through the micro-channels embedded in the MF chip, leading to an increase in the MB adsorption. Subsequently, at the optimized amounts of the dye concentration (89.12mgL(-1)), the adsorbent concentration (1.38gL(-1)), and pH (10.58) by means of Box-Behnken design (BBD) method, the maximum percentage of MB removal by the use of MF-fabricated EA-functionalized CS NPs was 98.4%. By fitting the obtained adsorption data to the isotherm models such as Lagmuir, Freundlich, and Temkin, it has been found that the adsorption mechanism followed the Langmuir model (maximum capacity of the adsorption 384.61mg/g), which assumed a monolayer coverage of MB molecules as adsorbates over a homogeneous adsorbent surface.
机译:纳米粒子(NP)的吸附剂的吸附尤其是由聚合物制成的那些,以将染料除去来自污染物的有毒物质仍然是一个关键问题。本作作品的目的是制备基于丙烯酸乙酯(EA) - 官能化的壳聚糖(CS)的NPS的微流体(MF)制备用于从水溶液中除去亚甲基蓝(MB)染料。为此目的,进行一系列实验,例如FTIR,SEM沿DLS和UV-VIS分光光度法,以研究样品的物理化学性质。 FTIR光谱表明,CS结构上的胺(-NH2)和羟基(-OH)基团被EA适当地替换。所描绘的SEM和DLS结果描绘了使用MF技术制造的EA功能化CS NP具有均匀的形状,与通过散装混合(BM)方法产生的样品相比,直径为70nm的直径(类似于300nm)。此外,官能化后MF辅助CS NP的表面电荷表现出比基于BM(类似于+ 14)的样品的下Zeta电位值(类似于+ 11),因为由于嵌入的微通道发生了层流量在MF芯片中,导致MB吸附的增加。随后,在优化的染料浓度(89.12mg1(-1))中,吸附剂浓度(1.38g1))和pH(10.58)通过Box-Behnken设计(BBD)方法,最大值使用MF制造的EA官能化CS NPS除去MB的百分比为98.4%。通过将所获得的吸附数据拟合到等温模型,如Lagmuir,Freundlich和Temkin,已经发现吸附机制遵循Langmuir模型(吸附的最大容量384.61mg / g),这假设了MB的单层覆盖范围在均相吸附表面上吸收分子。

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