Research field (4):
Recycling systems and society
, Civil engineering (environmental systems)
, Environmental materials/recycling technology
, Environmental load reduction/restoration technology
Research theme for competitive and other funds (21):
2022 - 2025 Development of a novel co-culture model of NH4-tolerant propionate-oxidizing bacteria and methane-producing archaea for the recovery of CH4 under high NH4+
2019 - 2023 Technology development for removal of 1,4-dioxane in landfill leachate through enrichment and activation of indigenous degrading bacteria
2019 - 2022 Screening of microalgae-growth promoting bacteria and their application for efficient microalgal biomass production
2018 - 2022 Potential of producing value-added chemical products using waste activated sludge as the catalyst in municipal wastewater treatment plants
2016 - 2019 Bioremediation of 1,4-dioxane-contaminated groundwater using 1,4-dioxane-degrading bacteria and their specific stimulants
2016 - 2019 Development of sludge property modification technology using PHA-accumulating bacteria for efficient anaerobic digestion
2015 - 2018 Identification of nitrogen contamination mechanisms of groundwater in coastal areas of Central Vietnam by using microbial technologies and stable isotope analyses
2015 - 2018 DEVELOPMENT OF MICROBIAL COMMUNITY DESIGN TECHNOLOGY USING THE RHIZOSPHERE OF AQUATIC PLANTS AND ITS APPLICATION TO ENVIRONMENTAL WATER QUALITY CONTROL
2013 - 2016 Development of comprehensive quantification method for pathogenic bacteria that contributes to the clarification of the occurrence of pathogenic bacteria in the aquatic environment
2012 - 2015 Elucidation of PHA accumulation mechanism by mixed microbial cultures with high PHA accumulation ability from wastewater substrates
2008 - 2009 Elucidation of contamination with environmental retinoids in the aquatic environment and identification of causative compounds
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Papers (167):
Zi-Yan Li, Shintaro Nagao, Daisuke Inoue, Michihiko Ike. Different bioaugmentation regimes that mitigate ammonium/salt inhibition in repeated batch anaerobic digestion: Generic converging trend of microbial communities. Bioresource Technology. 2024. 413. 131481-131481
Daisuke Inoue, Ryugo Nishimine, Shinpei Fujiwara, Kousuke Minamizono, Michihiko Ike. Aerobic biodegradation of chlorinated ethenes by Pseudonocardia sp. D17: Biodegradation ability without auxiliary substrates and concurrent biodegradation with 1,4-dioxane. Journal of Hazardous Materials Letters. 2024. 5. 100106-100106
YU REN, SHIN NAKAHO, DAISUKE INOUE, MICHIHIKO IKE. Applicability of rapid enrichment of polyhydroxyalkanoates-accumulating bacteria by aerobic dynamic discharge process to waste activated sludge from various wastewater treatment plants. Japanese Journal of Water Treatment Biology. 2024. 60. 2. 25-37
Yu Ren, Daisuke Inoue, Michihiko Ike. Potential of activated sludge-derived mixed microbial culture enriched on acetate to produce polyhydroxyalkanoates from various substrates. Journal of Material Cycles and Waste Management. 2024
Zi-Yan Li, Shintaro Nagao, Daisuke Inoue, Michihiko Ike. Different inhibition patterns of ammonia and salt revealed by kinetic analysis of their combined inhibitory effect on methanogenesis of hydrogen: A preliminary study. Biochemical Engineering Journal. 2024. 205. 109263-109263
Environmental Chemistry for Sustainable World 66, Emerging Contaminants Vol. 2 Remediation
2021
Education (1):
- 2005 Osaka University Graduate School, Division of Engineering
Professional career (1):
博士(工学) (大阪大学)
Work history (10):
2022/04 - 現在 Kansai University
2017/05 - 現在 大阪大学大学院工学研究科・准教授
2017/05 - 現在 Osaka University Graduate School of Engineering Division of Sustainable Energy and Environmental Engineering Associate Professor
2015/04 - 2017/04 北里大学医療衛生学部・准教授(大学院医療系研究科 兼務)
2012/04 - 2015/03 北里大学大学院医療系研究科・講師(兼務)
2012/03 - 2015/03 北里大学医療衛生学部・講師
2011/04/01 - 2012/02/29 Osaka University Graduate School of Engineering Division of Sustainable Energy and Environmental Engineering Assistant Professor
2011/04 - 2012/02 大阪大学大学院工学研究科・特任助教
2005/10/01 - 2011/03/31 Osaka University Graduate School of Engineering Division of Sustainable Energy and Environmental Engineering Specially Appointed Researcher
2019/07 - 2019/07 日本水環境学会 The Water and Environment Technology Conference 2019 Scientific Committee and Organizing Committee
2018/07 - 2018/07 日本水環境学会 The Water and Environment Technology Conference 2018
2017/07 - 2017/07 日本水環境学会 The Water and Environment Technology Conference 2017 Scientific Committee
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Awards (18):
2024/06 - The JSWE Paper Award 2023 Effectiveness of tetrahydrofuran at enhancing the 1,4-dioxane degradation ability of activated sludge lacking prior exposure to 1,4-dioxane