Research
Water holds intrinsic value in both quality and quantity, serving as an indispensable resource for healthy living and sustainable societal activities. To maximize its value sustainably, research focuses on various topics, such as water environment surveys, water treatment technologies, and water supply systems. For example, research on UV-based water treatment ranges from fundamental experiments to large-scale applications, with results achieving technological implementation and earning international recognition. Efforts also address water-related challenges in developing and remote areas through continuous fieldwork on water quality and usage. In addition, decentralized small-scale water systems are being explored as potential engineering solutions to urgent societal challenges, such as population decline, aging populations, and deteriorating infrastructure.
Grant-in-Aid for Scientific Research(Principal Investigator)
Grant-in-Aid for Scientific Research Database
Research Number | Research Content |
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26289181 |
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17H03329 |
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26289181 |
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24760427 |
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21760414 |
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16760441 |
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JST SICORP EIG CONCERT-Japan
April, 2020 – March, 2024 ”Innovative UV-LED applications to drinking water and wastewater treatment systems for sustainable water management in future communities”
Summary of the joint project | Small and decentralized water systems may play key roles to achieve sustainable water management in the future. As an option to enable decentralized water supplies, water treatment systems using UV light-emitting diode (UV-LED) were evaluated in multiple viewpoints. The research strengths of research team include the expertise in field demonstration of UV-LED reactors (U Tokyo, Japan), expertise as a validation center with high international recognition (DVGW-TZW, Germany), and expertise as a research center on environmental toxicology (RECETOX, Czech Republic). To highlight these strengths in an interactive manner, three main tasks were challenged including the validation of UV-LED reactors; field test of the reactors at a drinking water supply and a wastewater reclamation pilot facility; and examination of the fate of PPCPs in UV treatment. With integration of outcomes from these components, this joint research showed some synergies which were not achievable without collaboration. The outcomes were presented and published in multiple occasions, having fruitful feedbacks from academia, industries and practitioners. Project members obtained mutual understanding and trust, which are invaluable for future collaboration. To conclude, this research indicated the effectiveness of UV-LED water treatment as a technical option for small and decentralized water systems. |
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Final Report | https://www.jst.go.jp/inter/report/report_multilateral/report_concert-japan/water/final_oguma.pdf |
JST SICORP JST-NSERC
April, 2014 – March, 2018 ”Innovative UV Technologies for the Removal of Emerging Contaminants
and Sustainable Water Supplies in Small Communities”
Summary of the joint project | The objective of this project was to jointly evaluate and propose the application of novel UV based technologies, i.e. UV-LED and VUV-AOP, for ensuring the safety and sustainability of drinking water supplies in small and rural communities. UV-LED and VUV-AOP were evaluated in a lab-scale in multiple viewpoints while UV-LED was also tested in a pilot-scale in the field. In addition, statistical data analysis and microbial risk assessment were conducted to identify the technical needs in practice at small water systems. The intellectual achievements and expertise were shared between Japan and Canada, and tight networking of water specialists were achieved to seed future research collaborations and enable long term cooperation. |
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Final Report | https://www.jst.go.jp/inter/sicorp/report/canada/final_oguma.pdf |
その他
農林水産省受託研究 | 「昆虫嗅覚受容体を利用した飲食料由来のカビ臭の簡易検査システムの開発(2016年4月~2019年3月、研究分担者 」 |
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厚生労働科学研究費補助金 | ・「小規模水供給システムの持続可能な維持管理に関する統合的研究(20LA1005)(2020年4月~2023年3月、研究分担者) ・「小規模水供給システムの安定性及び安全性確保に関する統合的研究(H29-健危-一般-004、2017年4月~2020年3月、研究分担者) ・「地表水を対象とした浄水処理の濁度管理技術を補完する紫外線処理の適用に関する研究(H26-健危-一般-004、2014年4月~2017年3月、研究分担者) |
環境省受託研究 | ・環境省令和3年度革新的な省CO2 型感染症対策技術等の実用化加速のための実証事業「高効率・長寿命深紫外LED の技術開発と細菌・ウイルス不活化および脱炭素効果の実証(2021年~2026年3月、研究分担者)」 ・環境省環境研究総合推進費S-8「温暖化影響評価・適応政策に関する総合的研究(2010年~2015年3月、研究分担者) ・環境研究総合推進費「水系感染微生物による水環境汚染の把握と微生物起源解析の活用に関する研究(2016年4月~2019年3月、研究分担者)」 |
国内研究助成(抜粋) | ・クリタ水・環境科学振興財団2020年度特別助成(2020年~2023年) ・クリタ水・環境科学振興財団「紫外発光ダイオードを利用した小型浄水装置の開発と性能評価(2013年10月~2014年9月) ・下水道振興基金 東日本大震災復興研究等助成「被災時に有効な簡易下水処理技術としての紫外線消毒の検討(2013年)」 |
自治体・民間との共同研究(抜粋) | 「紫外線発光ダイオードを用いた微生物不活化の評価と水処理装置の開発」 「深紫外LEDの水消毒応用に関する研究」 「深紫外発光ダイオードを利用した水処理技術の開発」 「UV-LEDを用いた血液製剤微生物低減化方法の開発」 「水道原水中有機物の紫外線処理に関する研究」 |