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用于水修复的多功能全生物基气凝胶:用于染料和重金属吸附以及油水分离的应用。

Multifunctional fully biobased aerogels for water remediation: Applications for dye and heavy metal adsorption and oil/water separation.

机构信息

Department of Chemical and Petroleum Engineering, University of Calgary, Calgary T2N 1N4, Canada.

Department of Biomedical Engineering, University of Calgary, Calgary T2N 1N4, Canada; Pharmaceutical Production Research Facility, University of Calgary, Calgary T2N 1N4, Canada.

出版信息

J Hazard Mater. 2023 Sep 5;457:131824. doi: 10.1016/j.jhazmat.2023.131824. Epub 2023 Jun 12.

Abstract

Water ecosystem contamination from industrial pollutants is an emerging threat to both humans and native species, making it a point of global concern. In this work, fully biobased aerogels (FBAs) were developed by using low-cost cellulose filament (CF), chitosan (CS), citric acid (CA), and a simple and scalable approach, for water remediation applications. The FBAs displayed superior mechanical properties (up to ∼65 kPa m kg specific Young's modulus and ∼111 kJ/m energy absorption) due to CA acting as a covalent crosslinker in addition to the natural hydrogen bonding and electrostatic interactions between CF and CS. The addition of CS and CA increased the variety of functional groups (carboxylic acid, hydroxyl and amines) on the materials' surface, resulting in super-high dye and heavy metal adsorption capacities (619 mg/g and 206 mg/g for methylene blue and copper, respectively). Further modification of FBAs with a simple approach using methyltrimethoxysilane endowed aerogel oleophilic and hydrophobic properties. The developed FBAs showed a fast performance in water and oil/organic solvents separation with more than 96% efficiency. Besides, the FBA sorbents could be regenerated and reused for multiple cycles without any significant impact on their performance. Moreover, thanks to the presence of amine groups by addition of CS, FBAs also displayed antibacterial properties by preventing the growth of Escherichia coli on their surface. This work demonstrates the preparation of FBAs from abundant, sustainable, and inexpensive natural resources for applications in wastewater purification.

摘要

工业污染物对水生态系统的污染对人类和本地物种构成了新的威胁,成为全球关注的焦点。在这项工作中,我们使用低成本的纤维素长丝 (CF)、壳聚糖 (CS)、柠檬酸 (CA) 和简单且可扩展的方法,开发了全生物基气凝胶 (FBA),用于水修复应用。由于 CA 不仅充当了共价交联剂,而且还增强了 CF 和 CS 之间的天然氢键和静电相互作用,因此 FBA 显示出优异的机械性能(高达 ∼65 kPa m kg 的特定杨氏模量和 ∼111 kJ/m 的能量吸收)。CS 和 CA 的添加增加了材料表面的官能团种类(羧酸、羟基和胺基),导致超高效的染料和重金属吸附能力(分别为 619 mg/g 和 206 mg/g 的亚甲基蓝和铜)。通过使用甲基三甲氧基硅烷的简单方法进一步修饰 FBA,赋予了气凝胶亲油性和疏水性。开发的 FBA 在水和油/有机溶剂的分离中表现出快速的性能,效率超过 96%。此外,FBA 吸附剂可以在不显著影响其性能的情况下进行再生和重复使用多次。此外,由于 CS 中胺基的存在,FBA 还通过防止大肠杆菌在其表面生长而显示出抗菌性能。这项工作展示了使用丰富、可持续且廉价的天然资源制备 FBA,用于废水净化。

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