Permanganate-Induced Efficient Mineralization of Poly(vinylidene fluoride) and Vinylidene-Fluoride Based Copolymers in Low-Temperature Subcritical Water

Reactions of poly­(vinylidene fluoride) [PVDF], poly­(vinylidene fluoride-co-hexafluoropropylene) [poly­(VDF-co-HFP)] copolymer, and poly­(vinylidene fluoride-co-perfluoromethyl vinyl ether) [poly­(VDF-co-PMVE)] copolymer in subcritical water were performed with the aim to develop a technique for re...

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Veröffentlicht in:Industrial & engineering chemistry research 2019-07, Vol.58 (29), p.13030-13040
Hauptverfasser: Honma, Ryo, Hori, Hisao, da Cunha, Fernando Reis, Horiike, Naoki, Steinbach, Lucia, Ameduri, Bruno
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Sprache:eng
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Zusammenfassung:Reactions of poly­(vinylidene fluoride) [PVDF], poly­(vinylidene fluoride-co-hexafluoropropylene) [poly­(VDF-co-HFP)] copolymer, and poly­(vinylidene fluoride-co-perfluoromethyl vinyl ether) [poly­(VDF-co-PMVE)] copolymer in subcritical water were performed with the aim to develop a technique for recycling fluorine element. By addition of KMnO4 to the system, quasi-complete mineralization of PVDF was achieved at a rather low temperature (250 °C). When PVDF was reacted for 18 h in the presence of KMnO4 (158 mM, corresponding to a 1.6-fold molar excess relative to both fluorine and carbon atom contents of PVDF), the fluoride ions (F–) yield reached 100%, and the amount of remaining total organic carbon decreased to 2% of the carbon atoms in the initial PVDF. Poly­(VDF-co-HFP) and poly­(VDF-co-HFP) copolymers also showed quasi-complete mineralizations under the same conditions. During the reactions, MnO4 – was modified into MnO2. Compared to the previous method using H2O2, the reaction temperature that allows a complete mineralization was reduced by 50 °C.
ISSN:0888-5885
1520-5045
DOI:10.1021/acs.iecr.9b01921