Recycling of Epoxy/Fiberglass Composite Using Supercritical Ethanol with (2,3,5-Triphenyltetrazolium)2[CuCl4] Complex
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Protsenko, Alexander E.
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Komsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, RussiaKomsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, Russia
Protsenko, Alexander E.
[1
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Protsenko, Alexandra N.
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Komsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, RussiaKomsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, Russia
Protsenko, Alexandra N.
[1
]
Shakirova, Olga G.
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Komsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, RussiaKomsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, Russia
Shakirova, Olga G.
[1
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Petrov, Victor V.
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Komsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, RussiaKomsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, Russia
Petrov, Victor V.
[1
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[1] Komsomolsk Na Amure State Univ, Dept Chem & Chem Technol, Komsomolsk On Amur 681013, Russia
The widespread use of polymer composite materials (PCM) leads to an increase in non-recyclable waste. This paper discusses the feasibility of recycling fiberglass with an epoxy matrix by solvolysis in ethanol under supercritical conditions. The solvolysis process completes successfully within four hours in an environment of a pure solvent containing 10% water at a temperature of 280 degrees C when the solvent passes into the supercritical state. The treatment time increases up to 10 h at a process temperature of 250 degrees C. When using a coordination compound of copper(II) chloride with organic chloride salt having 2,3,5-triphenyltetrazolium as the counterion, having the composition of (2,3,5-triphenyltetrazolium)(2)[CuCl4], the treatment time is reduced. The addition of the complex of 5% by weight makes it possible to completely remove the epoxy matrix at a temperature of 250 degrees C for two hours. The products separated from the solvolysis liquid were studied by infrared spectroscopy. The resulting fibers were examined by thermogravimetric analysis and scanning electron microscopy. The residual strength of the recovered fibers is 98%. Thus, the resulting fibers can be reused in the composite industry. Including both for the production of decorative products and for the production of structural products made of polymer composite materials.
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Russian Acad Sci, Kola Res Ctr, Tananaev Inst Rare Element & Mineral Chem & Techn, Apatity 184200, RussiaRussian Acad Sci, Kola Res Ctr, Tananaev Inst Rare Element & Mineral Chem & Techn, Apatity 184200, Russia
Rakitin, Yu. V.
Kalinnikov, V. T.
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Russian Acad Sci, Kola Res Ctr, Tananaev Inst Rare Element & Mineral Chem & Techn, Apatity 184200, RussiaRussian Acad Sci, Kola Res Ctr, Tananaev Inst Rare Element & Mineral Chem & Techn, Apatity 184200, Russia
Kalinnikov, V. T.
Khodasevich, S. G.
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Russian Acad Sci, Kola Res Ctr, Tananaev Inst Rare Element & Mineral Chem & Techn, Apatity 184200, Russia
Russian Acad Sci, Kurnakov Inst Gen & Inorgan Chem, Moscow 119991, RussiaRussian Acad Sci, Kola Res Ctr, Tananaev Inst Rare Element & Mineral Chem & Techn, Apatity 184200, Russia
Khodasevich, S. G.
Novotortsev, V. M.
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Russian Acad Sci, Kola Res Ctr, Tananaev Inst Rare Element & Mineral Chem & Techn, Apatity 184200, Russia
Russian Acad Sci, Kurnakov Inst Gen & Inorgan Chem, Moscow 119991, RussiaRussian Acad Sci, Kola Res Ctr, Tananaev Inst Rare Element & Mineral Chem & Techn, Apatity 184200, Russia