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通过具有两性离子纳米水凝胶涂层的去木质化和羧化的椴木实现高效且耐用的稠油乳液脱水。

High-efficiency and durable removal of water-in-heavy oil emulsions enabled by delignified and carboxylated basswood with zwitterionic nanohydrogel coatings.

机构信息

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.

出版信息

J Colloid Interface Sci. 2022 Apr 15;612:445-458. doi: 10.1016/j.jcis.2021.12.146. Epub 2021 Dec 28.

Abstract

HYPOTHESIS

It is hypothesized that grafting zwitterionic nanohydrogel (ZNG) helps to achieve anti-asphaltene properties on cellulosic substrates, thus overcoming the fouling issue of natural cellulosic materials for treating oily emulsions. It is also hypothesized that ZNG coatings enhance the water-binding affinity of the substrates, resulting in an outstanding water-removal performance on asphaltene-stabilized emulsions with long-term stability.

EXPERIMENTS

A cellulosic substrate was derived from nature basswood via a sequence of delignification and carboxylation processes. The ZNG-DBS composite was then developed by esterification to covalently graft ZNGs on the inner channels of the substrate. The water-binding affinity, wettability, water-removal performance for treating water in asphaltene-stabilized emulsions were evaluated via characterizing the filtration/absorption, and anti-fouling mechanism of the ZNG-DBS.

FINDINGS

ZNG coatings enhance the hydration capability of the basswood substrate, allowing it to absorb water emulsion droplets protected by asphaltenes in the oil medium without being contaminated. Moreover, superior and stable removal capabilities were achieved by using this unique material to treat asphaltenes-stabilized water-in-oil emulsions with the water residue content of <1.0 and ∼0.065 wt% via cyclic filtration and absorption tests, respectively. Our results demonstrate the successful conversion of widely accessible wood resources to functional materials with great potential in the practical treatment of oily wastewater.

摘要

假设

假设接枝两性离子纳米水凝胶(ZNG)有助于在纤维素基质上实现抗沥青质性能,从而克服天然纤维素材料处理含油乳液时的污染问题。还假设 ZNG 涂层增强了基质的水结合亲和力,从而在具有长期稳定性的沥青质稳定乳液上具有出色的除水性能。

实验

纤维素基质由天然椴木通过一系列脱木质素和羧化过程获得。然后通过酯化反应开发 ZNG-DBS 复合材料,将 ZNG 共价接枝到基质的内通道上。通过过滤/吸收和 ZNG-DBS 的抗污染机制来评估水结合亲和力、润湿性和处理含沥青质乳液中水的去除性能。

发现

ZNG 涂层增强了椴木基质的水合能力,使其能够在油介质中吸收受沥青质保护的水乳液液滴,而不会被污染。此外,通过使用这种独特的材料通过循环过滤和吸收测试分别以<1.0 和 ∼0.065 wt%的水残留含量处理含沥青质的油包水乳液,实现了优越和稳定的去除能力。我们的结果表明,成功地将广泛可用的木材资源转化为具有处理含油废水实际潜力的功能材料。

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