Research Article
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Year 2024, , 72 - 78, 17.01.2025
https://doi.org/10.5281/zenodo.14670859

Abstract

References

  • Aaqil, M., Peng, C., Kamal, A., Nawaz, T., Zhang, F., & Gong, J. (2023). Tea Harvesting and Processing Techniques and Its Effect on Phytochemical Profile and Final Quality of Black Tea: A Review. Foods, 12(24), 1–28. https://doi.org/10.3390/foods12244467
  • ÇAYKUR. (2023). Çaykur Activity Report (Issue I). https://www.caykur.gov.tr/Pages/Yayinlar/YayinDetay.aspx?ItemType=2&ItemId=1001
  • Debnath, B., & Purkait, M. K. (2023). Sustainable Utilization of Tea Waste. https://doi.org/10.1007/978-981-19-8774-8_11
  • Elmas, C., & Gezer, C. (2019). Composition and Health Effect of Tea Plant (Camellia sinensis) Tea. Akademik Gıda, 17(3), 417–428. https://doi.org/10.24323/AKADEMIK-GIDA.647733
  • Erkal, H. (2023). Tea Product Report 2023. In T.C. Tarım ve Orman Bakanlığı Tarım Reformu Genel Müdürlüğü Tarımsal Ekonomi ve Politika Geliştirme Enstitüsü. chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://arastirma.tarimorman.gov.tr/tepge/Belgeler/PDF Ürün Raporları/2023 Ürün Raporları/Çay Ürün Raporu 2023-383 TEPGE.pdf
  • Erkal, H. (2024). Tea Product Report 2024. In T.C. Tarım ve Orman Bakanlığı Tarım Reformu Genel Müdürlüğü Tarımsal Ekonomi ve Politika Geliştirme Enstitüsü. chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://arastirma.tarimorman.gov.tr/tepge/Belgeler/PDF Ürün Raporları/2024 Ürün Raporları/Çay Ürün Raporu 2024-397 TEPGE.pdf
  • Eryaşar, A. (2007). Design, Manufacture, Trial Run and Investigation of Parameters Impacting Its Performance of A Biogas System for Rural Use. Ege Üniversitesi.
  • Fuentes-Cortés, L. F., Ávila-Hernández, A., Serna-González, M., & Ponce-Ortega, J. M. (2015). Optimal design of CHP systems for housing complexes involving weather and electric market variations. Applied Thermal Engineering, 90, 895–906. https://doi.org/10.1016/j.applthermaleng.2015.07.074
  • Haque, M., Bora, P., Phukan, M. M., & Borah, T. (2024). Bioenergy generation and value addition from processing plant-generated industrial tea waste: a thermochemical approach. Biomass Conversion and Biorefinery, 14(18), 22779–22790. https://doi.org/10.1007/s13399-023-04345-z
  • Mammadow, T. (2024). Importance And Role of Tea Plant (Camellia Sinensis L.) In Agriculture of Azerbaijan And Türkiye. Bursa Uludağ Üniversitesi Fen Bilimleri Enstitüsü.
  • Ministry of Agriculture and Forestry. (2020). Tea Evaluation Report. In Tarım ve Orman Bakanlığı. https://www.tarimorman.gov.tr/BUGEM/Belgeler/MİLLİ TARIM/Ürün Masaları Ürün Değerlendirme Raporları yayımlandı/Çay Değerlendirme Raporu.pdf
  • Nagaraja, M., Sundaresan, R., Natarajan, R., & Srinivas, T. (2013). Energy and Byproducts Recovery from Tea Waste. International Journal of Electrical Energy, 1(1), 49–54. https://doi.org/10.12720/ijoee.1.1.49-54
  • Pua, F. L., Subari, M. S., Ean, L. W., & Krishnan, S. G. (2020). Characterization of biomass fuel pellets made from Malaysia tea waste and oil palm empty fruit bunch. Materials Today: Proceedings, 31, 187–190. https://doi.org/10.1016/j.matpr.2020.02.218
  • Tiftik, B. E. (2016). Pyrolysis of Tea Factory Wastes and Investigation Of Pyrolysis Products. Ankara Üniversitesi.
  • TUİK. (2023). Tea Production, 1988-2023. Türkiye İstatistik Kurumu. https://data.tuik.gov.tr/Bulten/DownloadIstatistikselTablo?p=xXzRPL3HAjQJsLDQq9gQtYAgMlktgR/50H1xAjJ/eRg0H1HrYZGHBfyBINynlDbG
  • Turumtay, H. (2020). Investigation of combustion potential of tea pruning waste biomass mixed with lignite coal. Artvin Çoruh Üniversitesi Orman Fakültesi Dergisi, 21(2), 135–142. https://doi.org/10.17474/artvinofd.655079
  • Üstün, Ç., & Demirci, N. (2013). Composition and Health Effect of Tea Plant (Camellia sinensis) Tea. Mersin Üniversitesi Tıp Fakültesi Lokman Hekim Tıp Tarihi ve Folklorik Tıp Dergisi, 3(3), 5–12. https://dergipark.org.tr/mutftd/issue/43194/523880

Industrial Tea Waste and Energy Potential

Year 2024, , 72 - 78, 17.01.2025
https://doi.org/10.5281/zenodo.14670859

Abstract

Türkiye is ranked seventh in the world in tea cultivation and tea cultivation is carried out only in the cities of Rize, Trabzon, Artvin, Giresun and Ordu. The annual production amount of tea is 1.357 million tons and the highest cultivation rate is 67% in Rize City and the lowest is 2% in the Giresun-Ordu region. The tea plant harvested from the field is processed in state or private tea factories. The product obtained as a result of this process is defined as tea, and the remaining parts consisting of fiber, garbage and dust are defined as industrial tea waste (ITW). It is a big problem for both growers and tea operators due to the same harvest time of the tea plant in all cities, the high potential of tea cultivation in the region and the lack of suitable land structure for the disposal of ITW. Removing ITW from the factory environment during the production period and adding to the country's economy as an energy source is important in terms of sustainable energy.
In the study prepared with 2023 statistical data, the energy potential that can be obtained by directly burning ITW formed after tea production in factories was examined. As a result, it was found that 1.06e9 MJ of electrical energy and 1.06e9 MJ of thermal energy would be obtained annually if ITW in Türkiye were burned directly in the cogeneration system.

References

  • Aaqil, M., Peng, C., Kamal, A., Nawaz, T., Zhang, F., & Gong, J. (2023). Tea Harvesting and Processing Techniques and Its Effect on Phytochemical Profile and Final Quality of Black Tea: A Review. Foods, 12(24), 1–28. https://doi.org/10.3390/foods12244467
  • ÇAYKUR. (2023). Çaykur Activity Report (Issue I). https://www.caykur.gov.tr/Pages/Yayinlar/YayinDetay.aspx?ItemType=2&ItemId=1001
  • Debnath, B., & Purkait, M. K. (2023). Sustainable Utilization of Tea Waste. https://doi.org/10.1007/978-981-19-8774-8_11
  • Elmas, C., & Gezer, C. (2019). Composition and Health Effect of Tea Plant (Camellia sinensis) Tea. Akademik Gıda, 17(3), 417–428. https://doi.org/10.24323/AKADEMIK-GIDA.647733
  • Erkal, H. (2023). Tea Product Report 2023. In T.C. Tarım ve Orman Bakanlığı Tarım Reformu Genel Müdürlüğü Tarımsal Ekonomi ve Politika Geliştirme Enstitüsü. chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://arastirma.tarimorman.gov.tr/tepge/Belgeler/PDF Ürün Raporları/2023 Ürün Raporları/Çay Ürün Raporu 2023-383 TEPGE.pdf
  • Erkal, H. (2024). Tea Product Report 2024. In T.C. Tarım ve Orman Bakanlığı Tarım Reformu Genel Müdürlüğü Tarımsal Ekonomi ve Politika Geliştirme Enstitüsü. chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://arastirma.tarimorman.gov.tr/tepge/Belgeler/PDF Ürün Raporları/2024 Ürün Raporları/Çay Ürün Raporu 2024-397 TEPGE.pdf
  • Eryaşar, A. (2007). Design, Manufacture, Trial Run and Investigation of Parameters Impacting Its Performance of A Biogas System for Rural Use. Ege Üniversitesi.
  • Fuentes-Cortés, L. F., Ávila-Hernández, A., Serna-González, M., & Ponce-Ortega, J. M. (2015). Optimal design of CHP systems for housing complexes involving weather and electric market variations. Applied Thermal Engineering, 90, 895–906. https://doi.org/10.1016/j.applthermaleng.2015.07.074
  • Haque, M., Bora, P., Phukan, M. M., & Borah, T. (2024). Bioenergy generation and value addition from processing plant-generated industrial tea waste: a thermochemical approach. Biomass Conversion and Biorefinery, 14(18), 22779–22790. https://doi.org/10.1007/s13399-023-04345-z
  • Mammadow, T. (2024). Importance And Role of Tea Plant (Camellia Sinensis L.) In Agriculture of Azerbaijan And Türkiye. Bursa Uludağ Üniversitesi Fen Bilimleri Enstitüsü.
  • Ministry of Agriculture and Forestry. (2020). Tea Evaluation Report. In Tarım ve Orman Bakanlığı. https://www.tarimorman.gov.tr/BUGEM/Belgeler/MİLLİ TARIM/Ürün Masaları Ürün Değerlendirme Raporları yayımlandı/Çay Değerlendirme Raporu.pdf
  • Nagaraja, M., Sundaresan, R., Natarajan, R., & Srinivas, T. (2013). Energy and Byproducts Recovery from Tea Waste. International Journal of Electrical Energy, 1(1), 49–54. https://doi.org/10.12720/ijoee.1.1.49-54
  • Pua, F. L., Subari, M. S., Ean, L. W., & Krishnan, S. G. (2020). Characterization of biomass fuel pellets made from Malaysia tea waste and oil palm empty fruit bunch. Materials Today: Proceedings, 31, 187–190. https://doi.org/10.1016/j.matpr.2020.02.218
  • Tiftik, B. E. (2016). Pyrolysis of Tea Factory Wastes and Investigation Of Pyrolysis Products. Ankara Üniversitesi.
  • TUİK. (2023). Tea Production, 1988-2023. Türkiye İstatistik Kurumu. https://data.tuik.gov.tr/Bulten/DownloadIstatistikselTablo?p=xXzRPL3HAjQJsLDQq9gQtYAgMlktgR/50H1xAjJ/eRg0H1HrYZGHBfyBINynlDbG
  • Turumtay, H. (2020). Investigation of combustion potential of tea pruning waste biomass mixed with lignite coal. Artvin Çoruh Üniversitesi Orman Fakültesi Dergisi, 21(2), 135–142. https://doi.org/10.17474/artvinofd.655079
  • Üstün, Ç., & Demirci, N. (2013). Composition and Health Effect of Tea Plant (Camellia sinensis) Tea. Mersin Üniversitesi Tıp Fakültesi Lokman Hekim Tıp Tarihi ve Folklorik Tıp Dergisi, 3(3), 5–12. https://dergipark.org.tr/mutftd/issue/43194/523880
There are 17 citations in total.

Details

Primary Language English
Subjects Energy
Journal Section Research Article
Authors

Şükran Efe 0000-0002-4033-6786

Publication Date January 17, 2025
Submission Date December 12, 2024
Acceptance Date January 11, 2025
Published in Issue Year 2024

Cite

APA Efe, Ş. (2025). Industrial Tea Waste and Energy Potential. Journal of Energy Trends, 1(2), 72-78. https://doi.org/10.5281/zenodo.14670859