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Energy and cost analyses of kombucha beverage production

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  • Mohammadshirazi, Ahmad
  • Bagheri Kalhor, Elnaz

Abstract

Kombucha is a traditional fermented beverage and it is produced by the fermentation of tea and sugar. Many beneficial effects to the human body can be achieved using substances with antioxidative properties. Substrates for kombucha fermentation contain antioxidants which originated from tea leaves. This study is conducted by kombucha beverage production device that has been invented by authors, located in the Tehran province, Iran. Data is collected from a kombucha beverage production device, performed by 23 replications in capacity of 4.5L during January–December 2014. Total energy inputs and outputs were calculated as 2.77MJL−1 and 8.69MJL−1, respectively, therefore the energy productivity and net energy value are estimated as 0.38kgMJ−1 and 5.92MJL−1, respectively. The results show that the highest share of energy is consumed by sugar (40.9%) and kombucha beverage (29%). The ratio of energy outputs to energy inputs is approximately 3.14. The shares of renewable and direct energy were 15.7% and 91.5%, respectively from the total energy input. The net return and productivity from kombucha beverage production were found to be 0.38$L−1 and 1.03kg$−1, respectively. The results showed that by increasing volume of kombucha beverage production device, input costs (kombucha fungus, electricity, machinery and rent land expense) will decrease because of proration costs.

Suggested Citation

  • Mohammadshirazi, Ahmad & Bagheri Kalhor, Elnaz, 2016. "Energy and cost analyses of kombucha beverage production," Renewable and Sustainable Energy Reviews, Elsevier, vol. 55(C), pages 668-673.
  • Handle: RePEc:eee:rensus:v:55:y:2016:i:c:p:668-673
    DOI: 10.1016/j.rser.2015.11.022
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    1. Thankappan, Samarthia & Midmore, Peter & Jenkins, Tim, 2006. "Conserving energy in smallholder agriculture: A multi-objective programming case-study of northwest India," Ecological Economics, Elsevier, vol. 56(2), pages 190-208, February.
    2. Samavatean, Naeimeh & Rafiee, Shahin & Mobli, Hossein & Mohammadi, Ali, 2011. "An analysis of energy use and relation between energy inputs and yield, costs and income of garlic production in Iran," Renewable Energy, Elsevier, vol. 36(6), pages 1808-1813.
    3. Mohammadshirazi, Ahmad & Akram, Asadolah & Rafiee, Shahin & Mousavi Avval, Seyyed Hashem & Bagheri Kalhor, Elnaz, 2012. "An analysis of energy use and relation between energy inputs and yield in tangerine production," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(7), pages 4515-4521.
    4. Rajaeifar, Mohammad Ali & Akram, Asadolah & Ghobadian, Barat & Rafiee, Shahin & Heidari, Mohammad Davoud, 2014. "Energy-economic life cycle assessment (LCA) and greenhouse gas emissions analysis of olive oil production in Iran," Energy, Elsevier, vol. 66(C), pages 139-149.
    5. Heidari, M.D. & Omid, M., 2011. "Energy use patterns and econometric models of major greenhouse vegetable productions in Iran," Energy, Elsevier, vol. 36(1), pages 220-225.
    6. Mohammadi, Ali & Omid, Mahmoud, 2010. "Economical analysis and relation between energy inputs and yield of greenhouse cucumber production in Iran," Applied Energy, Elsevier, vol. 87(1), pages 191-196, January.
    7. Erdal, Gülistan & Esengün, Kemal & Erdal, Hilmi & Gündüz, Orhan, 2007. "Energy use and economical analysis of sugar beet production in Tokat province of Turkey," Energy, Elsevier, vol. 32(1), pages 35-41.
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