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Safranin-O removal from aqueous solutions using lignin nanoparticle-g-polyacrylic acid adsorbent: Synthesis, properties, and application

机译:使用木质素纳米粒子-G-聚丙烯酸吸附剂从水溶液中除去水溶液:合成,性能和应用

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摘要

In this study, alkali lignin modified by ethylene glycol and lignin nanoparticles was prepared through acid precipitation technology. Lignin nanoparticle-g-polyacrylic acid adsorbent was prepared using copolymerization reactions between lignin nanoparticle and polyacrylic acid in the presence of potassium persulfate as the radical initiator. Then, lignin nanoparticle-g-polyacrylic acid adsorbent was used to remove Safranin-O from an aqueous environment. The adsorbent structures and morphologies of lignin nanoparticle and lignin nanoparticle-g-polyacrylic acid adsorbent were investigated using scanning electron microscopy, Fourier transform infrared spectroscopy, and thermogravimetric analysis. Nanoparticle sizes were assessed using dynamic light scattering. Equilibrium isotherms were compared using the Langmuir, Freundlich, and Temkin adsorption models. Both adsorbent lignin nanoparticle and lignin nanoparticle-g-polyacrylic acid adsorbent showed good agreement with the Langmuir isotherm. The maximum adsorption capacities of lignin nanoparticle and lignin nanoparticle-g-polyacrylic acid adsorbent reached 99 and 138.88 mg g(-1) using model-like, pseudo-second-order, and intraparticle diffusion, respectively. Experimental results showed that adsorbent lignin nanoparticle and lignin nanoparticle-g-polyacrylic acid adsorbent followed the pseudo-second order kinetic model.
机译:在该研究中,通过酸沉淀技术制备由乙二醇和木质素纳米粒子改性的碱木质素。使用木质素纳米粒子和聚丙烯酸之间的共聚反应在过硫酸钾作为自由基引发剂存在下制备木质素纳米粒子-G-聚丙烯酸吸附剂。然后,使用木质素纳米粒子-G-聚丙烯酸吸附剂从水性环境中除去Safranin-O.采用扫描电子显微镜,傅里叶变换红外光谱和热重分析研究了木质素纳米粒子和木质素纳米粒子-G-聚丙烯酸吸附剂的吸附结构和形态。使用动态光散射评估纳米粒子尺寸。使用Langmuir,Freundlich和Temkin吸附模型进行比较均衡等温。吸附剂木质素纳米粒子和木质素纳米粒子-G-聚丙烯酸吸附剂与Langmuir等温线良好。木质素纳米粒子和木质素纳米粒子-G-聚丙烯酸吸附剂的最大吸附容量分别使用型号,伪二阶和椎间内扩散达到99和138.88mg G(-1)。实验结果表明,吸附剂木质素纳米粒子和木质素纳米粒子-G-聚丙烯酸吸附剂跟随伪二阶动力学模型。

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