Valorisation potential of black tea processing wastes for bioactive compounds recovery and renewable energy production

dc.contributor.authorÜnyay, Hilal
dc.contributor.authorAltay, Hatice Özmen
dc.contributor.authorPerendeci, N. Altınay
dc.contributor.authorSzufa, Szymon
dc.contributor.authorÖzdemir, Feramuz
dc.contributor.authorAngelidaki, İrini
dc.contributor.authorAffiliationFaculty of Process and Environmental Engineering. Lodz University of Technology. Ünyay, Hilal and Szufa, Szymon.en_EN
dc.contributor.authorAffiliationAkdeniz University, Engineering Faculty. Food Engineering Department. Altay, Hatice Özmen.en_EN
dc.contributor.authorAffiliationAkdeniz University, Engineering Faculty. Environmental Engineering Department. Perendeci, N. Altınay and Ünyay, Hilal.en_EN
dc.contributor.authorAffiliationDepartment of Chemical and Biochemical Engineering, Technical University of Denmark. Perendeci, N. Altınay and Angelidaki, İrini.en_EN
dc.contributor.authorAffiliationAkdeniz University, Engineering Faculty. Food Engineering Department. Özdemir, Feramuz.en_EN
dc.contributor.authorAffiliationtorrefactionen_EN
dc.date.accessioned2025-06-17T13:36:57Z
dc.date.issued2025
dc.descriptionAppendix A. Supplementary material: https://ars.els-cdn.com/content/image/1-s2.0-S2213343725018202-mmc1.docxen_EN
dc.descriptionThis study is based on the master's thesis (MSc.) for the H. O., Akdeniz University, Türkiye. This work was completed while the first author was a Doctoral Candidate at the Interdisciplinary Doctoral School at the Lodz University of Technology, Poland.en_EN
dc.description.abstractTea processing wastes, rich in carbohydrates—primarily cellulose and hemicellulose—and bioactive compounds such as polyphenols and caffeine, represent a valuable biomass resource that can be utilised for antioxidant extraction and energy recovery. Tea factories are assumed to produce uniform waste due to blending and accumulating residues in shared storage; however, four distinct waste types arise at different processing stages, each showcasing unique traits. Waste samples were taken directly from two different factories that produce black tea with Çaykur (nonpressed orthodox + rotorvane + pressed orthodox) and Rotorvane + CTC production methods belonging to the Turkish Tea Board, Türkiye, within three shooting periods and four black tea processing stages. Tea processing waste samples were evaluated from the point of resource recovery as bioactive compounds and energy production. Significant variations were found in total phenolic content (4.75–8.65 gGAE/100 gDM), gallic acid (0.47–0.61 %), and caffeine (1.33–2.54 %) levels among the tea wastes examined. Tea processing waste from the Çaykur method exhibited higher caffeine content. Methane production from anaerobic digestion ranged from 97.3 to 203.9 mLCH4/gVS. Under torrefaction at 285°C, the higher heating value (HHV) demonstrated a remarkable 43.9 % increase, reaching a peak HHV of 24.36 MJ/kg. Torrefaction yielded impressive energy yields of 82.3 % and 92.1 %. These findings underscore the efficacy of torrefaction at this temperature in boosting the energy content of the biomass while maintaining high energy yield percentages. This study presents the first integrative and multidimensional framework for tea waste valorisation, offering comprehensive insights into its dual-purpose utilisation by concurrently assessing bioactive compounds such as total phenolic content, polyphenolic profile, and caffeine concentration and energy potential through biogas and biochar production across different tea manufacturing techniques, waste stream types, and shooting period.en_EN
dc.description.sponsorshipThe authors would like to thank Çaykur A.Ş. Company, the biggest tea producer in Türkiye, for providing samples and opening their production process. en_EN
dc.description.sponsorshipThe authors also thank Akdeniz University for their laboratory infrastructure and support.en_EN
dc.identifier.citationHilal Unyay, Hatice Ozmen Altay, N. Altınay Perendeci, Szymon Szufa, Feramuz Ozdemir, İrini Angelidaki, Valorisation potential of black tea processing wastes for bioactive compounds recovery and renewable energy production, Journal of Environmental Chemical Engineering, Volume 13, Issue 3, 2025, 117124, ISSN 2213-3437, https://doi.org/10.1016/j.jece.2025.117124
dc.identifier.doi10.1016/j.jece.2025.117124
dc.identifier.issn2213-2929
dc.identifier.urihttp://hdl.handle.net/11652/5623
dc.identifier.urihttps://doi.org/10.1016/j.jece.2025.117124
dc.language.isoen
dc.publisherElsevier
dc.relation.ispartofserieshttps://www.sciencedirect.com/journal/journal-of-environmental-chemical-engineering
dc.relation.ispartofseriesJournal of Environmental Chemical Engineering 13 (2025) 117124
dc.rightsAttribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectanaerobic digestionen_EN
dc.subjectbioactive compoundsen_EN
dc.subjectbiocharen_EN
dc.subjectbiogasen_EN
dc.subjectblack tea production methodsen_EN
dc.subjecttea processing wasteen_EN
dc.subjectresource recoveryen_EN
dc.subjecttorrefactionen_EN
dc.titleValorisation potential of black tea processing wastes for bioactive compounds recovery and renewable energy production
dc.typeArtykułpl_PL
dc.typeArticleen_EN
pl.publication.versionReceived 6 February 2025, Revised 26 April 2025, Accepted 15 May 2025, Available online 17 May 2025, Version of Record 21 May 2025.en_EN

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