Marble Processing Effluent Treatment Sludge in Waste Poly(ethylene Terephthalate) Pyrolysis as Catalyst–ii: Recovery From Pyrolytic Fluids

dc.contributor.author Ahmetli, G.
dc.contributor.author Ozgan, A.
dc.contributor.author Onen, V.
dc.contributor.author Kalem, M.
dc.contributor.author Goktepeli, G.
dc.contributor.author Yel, E.
dc.date.accessioned 2024-03-16T09:49:33Z
dc.date.available 2024-03-16T09:49:33Z
dc.date.issued 2024
dc.description.abstract In this study, feedstock and energy recovery potential from fluid fraction of catalytic pyrolysis of poly(ethylene terephthalate) plastic waste in the presence of marble processing effluent physico-chemical sludge catalyst were investigated. The contribution of the study is both symbiotic disposal of two kinds of wastes and produced valuable products. The pyrolysis fluid products obtained at 300–700 °C and 10–50% catalyst dose were inquired via chemical, thermogravimetric and chromatographic means. Main recoverable compounds were in the benzene group, followed by the esters, alcohols and ketones. The variety of organic components in pyrolytic gas was detected in aliphatic compounds (alkanes and alkenes) followed by the oxygenated organics and aromatic compounds. Benzoic acid, Methanone diphenyl(benzophenone), 1,1biphenyl, 9H Fluorene, Octane, Methyl benzene, some Benzene and Heptene derivatives were the components that are easily recoverable from the pyrolytic fluids. All these recoverable components are economically important feedstocks utilized in industrial processes. Optimization of recovery and enrichment methods of these compounds is recommended for further study. More thermally stable products formed and the higher final thermal residue of pyrolytic oil and oligomer products were obtained at higher pyrolysis temperatures. Their T5, T10 and T50 values varied between 36–44, 44–54, and 72–84 °C, respectively, while they were 131–154, 141–160 and 217–313 °C for oligomers. Calorific values of the produced oligomers were in the range of 5541–6984 cal/g. This study indicated that the thermochemical degradation of poly(ethylene terephthalate) with marble sludge catalyst is important approach for material and energy recovery in terms of fluid products of the process. © The Author(s) under exclusive licence to Iranian Society of Environmentalists (IRSEN) and Science and Research Branch, Islamic Azad University 2024. en_US
dc.description.sponsorship Japan Society for the Promotion of Science, JSPS: CAYDAG-118Y475, JPJSBP12019942; Türkiye Bilimsel ve Teknolojik Araştırma Kurumu, TÜBİTAK en_US
dc.identifier.doi 10.1007/s13762-023-05388-5
dc.identifier.issn 1735-1472
dc.identifier.issn 1735-2630
dc.identifier.scopus 2-s2.0-85184480839
dc.identifier.uri https://doi.org/10.1007/s13762-023-05388-5
dc.identifier.uri https://hdl.handle.net/20.500.13091/5239
dc.language.iso en en_US
dc.publisher Institute for Ionics en_US
dc.relation.ispartof International Journal of Environmental Science and Technology en_US
dc.rights info:eu-repo/semantics/closedAccess en_US
dc.subject Aliphatics and aromatics recovery en_US
dc.subject Circular economy en_US
dc.subject Industrial symbiosis en_US
dc.subject Plastic en_US
dc.subject Recycling en_US
dc.subject Benzene en_US
dc.subject Benzoic acid en_US
dc.subject Catalysts en_US
dc.subject Effluent treatment en_US
dc.subject Ethylene en_US
dc.subject Feedstocks en_US
dc.subject Ketones en_US
dc.subject Marble en_US
dc.subject Oligomers en_US
dc.subject Plastic recycling en_US
dc.subject Pyrolysis en_US
dc.subject Waste disposal en_US
dc.subject Aliphatic and aromatic recovery en_US
dc.subject Aromatic recovery en_US
dc.subject Circular economy en_US
dc.subject Energy recovery en_US
dc.subject Fluid fraction en_US
dc.subject Industrial symbiosis en_US
dc.subject Marble processing en_US
dc.subject Poly(ethylene) terephthalate en_US
dc.subject Recycling en_US
dc.subject ]+ catalyst en_US
dc.subject Effluents en_US
dc.title Marble Processing Effluent Treatment Sludge in Waste Poly(ethylene Terephthalate) Pyrolysis as Catalyst–ii: Recovery From Pyrolytic Fluids en_US
dc.type Article en_US
dspace.entity.type Publication
gdc.author.institutional Ahmetli, G.
gdc.author.institutional Ozgan, A.
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gdc.description.department KTÜN en_US
gdc.description.departmenttemp Ahmetli, G., Department of Chemical Engineering, Faculty of Engineering and Natural Sciences, Konya Technical University, Campus, Konya, 42022, Turkey; Ozgan, A., Department of Environmental Engineering, Faculty of Engineering and Natural Sciences, Konya Technical University, Campus, Konya, 42022, Turkey; Onen, V., Department of Mining Engineering, Faculty of Engineering and Natural Sciences, Konya Technical University, Campus, Konya, 42022, Turkey; Kalem, M., Department of Environmental Engineering, Faculty of Engineering and Natural Sciences, Konya Technical University, Campus, Konya, 42022, Turkey; Goktepeli, G., Department of Environmental Engineering, Faculty of Engineering and Natural Sciences, Konya Technical University, Campus, Konya, 42022, Turkey; Yel, E., Department of Environmental Engineering, Faculty of Engineering and Natural Sciences, Konya Technical University, Campus, Konya, 42022, Turkey en_US
gdc.description.endpage 6042
gdc.description.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
gdc.description.scopusquality Q2
gdc.description.startpage 6021
gdc.description.volume 21
gdc.description.wosquality Q2
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gdc.virtual.author Yel, Esra
gdc.virtual.author Önen, Vildan
gdc.virtual.author Ahmetli, Gülnare
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