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Chitosan/nano-lignin based composite as a new sorbent for enhanced removal of dye pollution from aqueous solutions

机译:壳聚糖/纳米木质素基复合材料作为一种新的吸附剂,用于增强水溶液中染料污染的去除

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The utilization of renewable and functional group enriched nano-lignin as bio-additve in fabricating composite has become the focus of attention worldwide. Herein, lignin nanoparticles in the form of hollow spheres with the diameter of the order of 138 +/- 39 nm were directly prepared from agro-industrial waste (palm kernel shell) using recyclable tetrahydrofuran in an acidified aqueous system without any chemical modification steps. We then fabricated a new chitosan/nano-lignin composite material as highly efficient sorbent, as demonstrated by efficient removal (similar to 83%) of methylene blue (MB) dye under natural pH conditions. The adsorption process obeyed pseudo-second-order kinetics and adequate fitting of the adsorption data using Langmuir model suggested a monolayer adsorption with a maximum adsorption capacity of 74.07 mg g(-1). Moreover, thermodynamic study of the system revealed spontaneous and endothermic nature of the sorption process. Further studies revealed that chitosan composite with nano-lignin showed better performance in dye decontamination compared to native chitosan and chitosan/bulk lignin composite. This could essentially be attributed to synergistic effects of size particularity (nano-effect) and incorporated functionalities due to lignin nanoparticles. Recyclability study performed in four repeated adsorption/regeneration cycles revealed recyclable nature of as-prepared composite, whilst adsorption experiments using spiked real water samples indicated recoveries as high as 89%. Based on this study, as-prepared bio-nanocomposite may thus be considered as an efficient and reusable adsorptive platform for the decontamination of water supplies. (C) 2019 Elsevier B.V. All rights reserved.
机译:可再生和官能团的利用富含纳米木质素作为制造复合材料的生物凋亡已成为全球关注的重点。在此,在酸化的水性系统中使用可回收的四氢呋喃,直接制备具有138 +/- 39nm的直径为138 +/- 39nm的中空球形形式的木质素纳米粒子,其在酸化的水性系统中使用可再循环的四氢呋喃,而没有任何化学改性步骤。然后,我们制造了一种新的壳聚糖/纳米木质素复合材料作为高效的吸附剂,如在天然pH条件下有效的去除(类似于83%)亚甲基蓝(MB)染料所证明的。吸附过程遵循伪二阶动力学,使用Langmuir模型的吸附数据充分拟合提出了一种单层吸附,最大吸附能力为74.07mg g(-1)。此外,系统的热力学研究揭示了吸附过程的自发性和吸热性质。进一步的研究表明,与天然壳聚糖和壳聚糖/散装木质素复合材料相比,含有纳米木质素的壳聚糖复合材料在染料去污方面表现出更好的性能。这主要是归因于尺寸特异性(纳米效应)的协同效应,并引起的Lignin纳米粒子引起的功能。在四次重复的吸附/再生循环中进行的可再循环性研究揭示了用制备的复合材料的可回收性质,而使用尖刺实水样的吸附实验表明回收率高达89%。基于该研究,如制备的生物纳米复合材料可以被认为是用于净化水供应的有效和可重复使用的吸附平台。 (c)2019 Elsevier B.v.保留所有权利。

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