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Fields Medical Life Sciences Information Communication Environment Nanotechnology / Materials Energy Manufacturing Technology Social Infrastructure Frontier Liberal Arts Themes Researchers JP Top Energy The Construction of a Decentralized Energy Production System Using Small Methane Fermentation Systems That Utilize Exhaust Heat or Hot Springs and a Local Circulation System The Construction of a Decentralized Energy Production System Using Small Methane Fermentation Systems That Utilize Exhaust Heat or Hot Springs and a Local Circulation System JAPANESEINQUIRY update:2022/06/01     NEXT PREV Features and Uniqueness In this project, we reduce the costs of energy production via anaerobic digestion by utilizing exhaust heat from a factory, which resulted in a positive energy balance, although the methane fermentation system tested was on a small scale. Using small-scale methane fermentation with a positive energy balance, the initial investment is small, enabling a company to invest in, and install, such a system. This would decentralize energy production within an area. Moreover, this system not only produces energy, but is a basis for resource recycling. Practical Application Food factory, hotel, restaurant, where food garbage or organic waste was produced much. Keywords biomass energy waste treatment CO2 reduction resource circulation ene-tourism Researchers Graduate School of Agricultural Science Chika Tada, Associate ProfessorDoctor of Agriculture Laboratory Website researchmap Laboratory Website researchmap Related Information  “Investigation and basic research of a small-scale methane fermentation system using heat from a hot spring” Takashi SUZUKI, Ryosuke TAJIMA, Chika TADA, Journal of the Japan Institute of Energy, 91, 892-899(2012), (in Japanese) Environmental Impacts and Cost of Methane Fermentation System Using Hot Springs. Ryosuke TAJIMA, Takashi SUZUKI, Chika TADA, JIFS (Journal if Integrated Field Science), vol.10, in press Browsing History User Who Reviewed This Content Also Reviewed Extracorporeal Shock Wave Therapy as a New, Non-Invasive Angiogenic Therapy [ SHIMOKAWA Hiroaki Professor ] Advanced Educational Environment with Interactive Instruction System IMPRESSION [ Takashi Mitsuishi Associate Professor ] A novel crystal growth via controlling an energy relationship between crystal and melt with applying an electric field [ Satoshi Uda Specially Appointed Professor(Research) ] Research Profiles ©TOHOKU UNIVERSITY How to Use FAQ For Researchers Site Policy [jp] ©TOHOKU UNIVERSITY Fields Medical Life Sciences Information Communication Environment Nanotechnology / Materials Energy Manufacturing Technology Social Infrastructure Frontier Liberal Arts Fields Themes Researchers 日本語 ENGLISH Close

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