A Modified Porous Sponge with Selective Ability for Oil Removal from Oil-Water Mixtures

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Abstract

As oil and chemical spills pose a significant threat to the water environment, the need to develop efficient sorbent materials to remove oil and organic pollutants from water has arisen. This study aimed to develop a simple modification scheme to impart oil and water selective absorption capacity to a common three-dimensional porous material. Commercially available polyurethane sponges were used as the base material, and vinyl silica aerogel particles were loaded onto the sponges using polydimethylsiloxane as an adhesion agent. As a result, the water contact angle of the modified sponge increased from 118° to 149.2°, and the water absorption decreased from 106.5 g/g to 0.2 g/g; it could absorb oil in oil-water mixtures without absorbing water and maintain an excellent level of selective absorption ability after 20 cycles. This modification scheme is easy to operate and robust and is a scheme of practical application.

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Cheng, J., Hu, J., Wang, J., Huang, Z., & Ye, B. (2022). A Modified Porous Sponge with Selective Ability for Oil Removal from Oil-Water Mixtures. Adsorption Science and Technology, 2022. https://doi.org/10.1155/2022/4790592

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