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Pickering 乳液模板纳米复合膜用于优异的破乳和油水分离。

Pickering Emulsion-Templated Nanocomposite Membranes for Excellent Demulsification and Oil-Water Separation.

机构信息

Department of Textile and Fibre Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi110016, India.

出版信息

ACS Appl Mater Interfaces. 2022 Dec 7;14(48):54233-54244. doi: 10.1021/acsami.2c16483. Epub 2022 Nov 20.

Abstract

A worldwide steady increase in oily wastewater, due to oil spillage and various industrial discharges, requires immediate efforts toward development of an effective strategy and materials to preserve the natural water bodies. Designing a superwettable fibrous membrane of robust structure and anti-fouling property for efficient separation of oil-water mixtures and emulsions is therefore highly demanding. The electrospun fibrous membrane, which possesses porosity and flexibility and properties including superwettability and tunable functionality, can be considered as apposite materials for this cause. In this approach, we combined two strategies, viz., Pickering emulsion and near gel resin (nGR) emulsion electrospinning together to produce a fibrous nanocomposite membrane for efficient oil-water separation and demulsification. nGR Pickering emulsions were stabilized using hydrophilic SiO nanoparticles and successfully optimized for fabricating the crosslinked core sheath-structured fibrous membrane. The prepared membrane provided twofold functionality due to the core sheath structure of the fibers. The crosslinked polystyrene core offered high oil adsorption capacity, whereas SiO-functionalized crosslinked polyvinyl alcohol sheath provided a rough, superhydrophilic surface with underwater oleophobic behavior to the membrane. The optimized SiO-Pickering emulsion-templated nanocomposite membrane demonstrated excellent underwater anti-oil adhesion behavior (UWOCA ∼148°) with efficient oil-water separation capacity of more than 99% and separation flux up to 3346 ± 91 L m h. The membrane was evaluated against various oil-water emulsions and found to have a superior separation efficiency. Moreover, excellent anti-oil adhesion property provided the intact membrane, where consistent separation performance was achieved up to 10 separation cycles without any loss. The membrane was used for separation of hot oil-water emulsions and showed no structural disintegration or loss in separation performance when exposed to elevated temperatures. The developed nanocomposite membranes could efficiently be used for separation and demulsification, and their applications can be explored in various other fields including selective sorption, catalysis, and storage in future.

摘要

由于溢油和各种工业排放,全球含油废水不断增加,因此需要立即努力开发一种有效策略和材料来保护天然水体。因此,设计一种具有稳健结构和抗污染性能的超亲油纤维膜,以有效分离油水混合物和乳液,是非常有必要的。静电纺纤维膜具有多孔性和柔韧性,并且具有超亲水性和可调功能等特性,可以被认为是适合这一目的的材料。在这种方法中,我们结合了两种策略,即 Pickering 乳液和近凝胶树脂(nGR)乳液静电纺丝,共同制备用于高效油水分离和破乳的纤维纳米复合膜。使用亲水性 SiO2 纳米颗粒稳定 nGR Pickering 乳液,并成功优化了用于制备交联核壳结构纤维膜的条件。由于纤维的核壳结构,制备的膜提供了双重功能。交联聚苯乙烯核提供了高的吸油能力,而 SiO2 功能化交联聚乙烯醇鞘提供了水下疏油性的粗糙超亲水表面。优化后的 SiO2-Pickering 乳液模板纳米复合膜表现出优异的水下抗油附着行为(UWOCA∼148°),具有超过 99%的高效油水分离能力和高达 3346±91 L m h 的分离通量。该膜对各种油水乳液进行了评估,发现具有优异的分离效率。此外,优异的抗油附着性能使膜保持完整,在 10 次分离循环中,分离性能保持不变,没有任何损失。该膜还用于分离热油-水乳液,在暴露于高温时,没有结构解体或分离性能损失。开发的纳米复合膜可有效地用于分离和破乳,其应用可以在未来的其他领域,如选择性吸附、催化和储存等领域进行探索。

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