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Received November 24, 2021
Accepted January 21, 2022
- This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/bync/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
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The structure and properties of water-based silicone blended phenolic resin and its application in oil filter paper-based materials
Engineering Research Center of Papermaking and Pollution Control, School of Light Industry Science and Engineering, South China University of Technology, Guangzhou, 510641, China
Korean Journal of Chemical Engineering, August 2022, 39(8), 2201-2210(10), 10.1007/s11814-022-1073-8
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Abstract
The research on water-based and enhanced modification of phenolic resin for impregnation of automobile engine oil filter paper has attracted widespread attention. First, the organosilicon was modified, the polyoxyethylene ether (PEO) and allyl glycidyl ether (AGE) were introduced through the hydrosilylation reaction, and the optimal modification conditions of PEO and AGE were discussed. The results show that when the PEO:AGE molar ratio is 3 : 1, the modified silicone prepared has good dispersibility in water. Scanning electron microscopy (SEM) energy dispersive imaging (EDS) was used to analyze the morphology of resin impregnated filter paper. The results show that when the mass ratio of modified silicone to phenolic resin is 5%, the silicone molecular chains and the phenolic resin form a uniform three-dimensional network structure by bonding through chemical bonds. Compared with unmodified pure phenolic resin impregnated filter paper, the mechanical properties and engine oil resistance properties of the silicone-modified phenolic resin-impregnated filter paper are improved.
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Alex AS, Bhuvaneswari S, Chandran SC, J. Anal. Appl. Pyrolysis, 129, 241 (2018)
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Sarkar B, Goyal R, Pendem C, J. Mol. Catal. A-Chem., 424, 17 (2016)
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Eduok U, Faye O, Szpunar J, Prog. Org. Coat., 111, 24 (2017)
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