Affiliation |
Faculty of Engineering, Division of Materials Science and Chemical Engineering |
Job Title |
Lecturer |
Research Fields, Keywords |
bioremediation, microbiom analysis, environmental microbiology, fermentation engineering |
Mail Address |
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Related SDGs |
The Best Research Achievement in Research Career 【 display / non-display 】
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【Published Thesis】 Temperature dependence of sequential chlorinated ethenes dechlorination and the dynamics of dechlorinating microorganisms 2022.01
【Awards】 第48回環境賞 環境大臣賞 2021.05
【Published Thesis】 Bacterial diversity in biological filtration system for the simultaneous removal of arsenic, iron and manganese from groundwater. 2014.04
The Best Research Achievement in the last 5 years 【 display / non-display 】
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【Awards】 第25回 国土技術開発賞 最優秀賞<国土交通大臣表彰> 2023.08
【Awards】 第48回環境賞 環境大臣賞 2021.05
【Published Thesis】 Temperature dependence of sequential chlorinated ethenes dechlorination and the dynamics of dechlorinating microorganisms 2022.01
【Published Thesis】 Effect of elevated temperature on cis-1,2-dichloroethene dechlorination and microbial community structure in contaminated soils—A biostimulation approach 2020.01
【Published Thesis】 DNA解析からのゴチュジャン膨れ事故原因解明 2019.03
Education 【 display / non-display 】
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-1997
Osaka University Department of Fermentation Engineering Completed
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-1991
Osaka University Department of Fermentation Engineering Graduated
Degree 【 display / non-display 】
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Doctor of Engineering - Osaka University
Campus Career 【 display / non-display 】
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2023.4
Duty Yokohama National UniversityFaculty of Engineering Division of Materials Science and Chemical Engineering Lecturer
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2007.4-2023.3
Duty Yokohama National UniversityFaculty of Engineering Division of Materials Science and Chemical Engineering Research Fellow
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2001.4-2007.3
Duty Yokohama National UniversityFaculty of Engineering Division of Materials Science and Chemical Engineering Research Assistant
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1998.4-2001.3
Duty Yokohama National UniversitySchool of Engineering Research Assistant
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2023.4
Concurrently Yokohama National UniversityCollege of Engineering Science Department of Chemistry, Chemical Engineering and Life Science Lecturer
External Career 【 display / non-display 】
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1997.4-1998.3
Nihon Univ College of Bioresource Sciences Postdoctoral fellow
Academic Society Affiliations 【 display / non-display 】
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2022.8
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The Society for Biotechnology, Japan
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The japanese Society of Microbial Ecology
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Japan Society on Water Environment
Research Areas 【 display / non-display 】
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Life Science / Applied microbiology
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Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Biofunction and bioprocess engineering
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Life Science / Biodiversity and systematics
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Life Science / Molecular biology
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Environmental Science/Agriculture Science / Environmental load reduction and remediation
Research Career 【 display / non-display 】
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Analysis of population changes in bio processes with microbial consortia using NGS data.
Grant-in-Aid for Promotion of Private Scientific Research
Project Year:
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Monitoring of microbial consortia in biodegradation of chlorinated organic compounds in groundwater
Energy Conservation Technology Research and Development
Project Year:
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Monitoring of microbial consortia in food fermentation process using Next Generation Sequencing
Grant-in-Aid for Promotion of Private Scientific Research
Project Year:
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様々な細胞表層構造・形態を持つ細菌の土壌への吸着能の評価
Grant-in-Aid for Scientific Research
Project Year:
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重油汚染土壌のファイトレメディエーションにおける根圏細菌の動態解析
Project Year:
Books 【 display / non-display 】
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Metal biotechnology
Ichiro Suzuki( Role: Contributor , 3.2.2 Biological removal of metal ions for the treatment of drinking water and waste water.)
Seizando ( ISBN:9784425800018 )
Language:Japanese Book type:Scholarly book
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Biological treatment for removal of iron, manganese, and arsenic from groundwater
Ichiro Suzuki, Danladi Mahuta Sahabi( Role: Joint author)
Handbook of Metal Biotechnology, Pan Stanford Publishing ( ISBN:9789814267984 )
Language:English Book type:Scholarly book
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微生物群集による鉄・マンガン含有地下水の上水処理とヒ素除去
小泉淳一( Role: Joint author)
メタルバイオテクノロジーによる環境保全と資源回収 -新元素戦略の新しいキーテクノロジー-、CMC出版
Language:Japanese Book type:Scholarly book
Papers 【 display / non-display 】
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Development of a gene replacement method for the filamentous bacterium Leptothrix cholodnii SP-6
Kunoh, T., Ono, E., Yamamoto, T., Suzuki, I., Takeda, M., & Nomura, N.
Bio-protocol 13 ( 8 ) 2023.4 [Reviewed]
Language:English Publishing type:Research paper (scientific journal) Joint Work
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THERMALLY ENHANCED IN SITU BIOREMEDIATION OF GROUNDWATER CONTAMINATED WITH CHLORINATED ETHENES
YAMAZAKI Yuji, FURUKAWA Yasuhide, NAKASHIMA Tomohiro, INABA Kaoru, SHIMIZU Takaaki, NISHIGAKI Makot … Show more authors
YAMAZAKI Yuji, FURUKAWA Yasuhide, NAKASHIMA Tomohiro, INABA Kaoru, SHIMIZU Takaaki, NISHIGAKI Makoto, TIAN Xiaowei, SUZUKI Ichiro, KOBAYASHI Takeshi, INOUE Daisuke, IKE Michihiko Hide authors
Journal of Japan Society of Civil Engineers, Ser. G (Environmental Research) 78 ( 2 ) 49 - 60 2022.5 [Reviewed]
Language:Japanese Publishing type:Research paper (scientific journal) Publisher:Japan Society of Civil Engineers Joint Work
<p> This study was conducted to explore the effectiveness of thermally enhanced <i>in situ</i> bioremediation of the groundwater contaminated with chlorinated ethenes in reducing the treatment time. First, the soilcolumn experiments were used to evaluate the effects of elevated temperatures on the dechlorination of tetrachloroethene under semi-static flow conditions. Then, a field test of thermally enhanced <i>in situ</i> bioremediation of the groundwater contaminated with chlorinated ethenes in Japan was conducted using groundwater circulation. The abundance of <i>Dehalococcoides</i>, the bacteria responsible for the dechlorination of <i>cis</i>-1, 2-dichloroethene and vinyl chloride to ethene, increased rapidly at 30°C than at 15°C in the column experiments. This increase greatly improved dechlorination performance of <i>cis</i>-1, 2-dichloroethene and vinyl chloride. In the field test, the temperature and nutrient concentrations (as total carbon) in the contaminated aquifer were controlled at 23°C–30°C and above 100 mg/L, respectively, through repeated injection and pumping during the demonstration period. The chlorinated ethenes in the groundwater decreased to below the groundwater standards after 378 days. The total chlorinated ethene removal rate obtained in the field test was higher than those obtained in previous studies of <i>in situ</i> bioremediation without thermal treatment. The results demonstrated the effectiveness of thermally enhanced <i>in situ</i> bioremediation of groundwater contaminated with chlorinated ethenes in Japan.</p>
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Yuji Yamazaki, Gaku Kitamura, Xiaowei Tian, Ichiro Suzuki, Takeshi Kobayashi, Takaaki Shimizu, Dais … Show more authors
Yuji Yamazaki, Gaku Kitamura, Xiaowei Tian, Ichiro Suzuki, Takeshi Kobayashi, Takaaki Shimizu, Daisuke Inoue, Michihiko Ike Hide authors
Chemosphere 287 131989 2022.1 [Reviewed]
Language:English Publishing type:Research paper (scientific journal) Joint Work
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Kashiwabara Daisuke, Kondo Keiko, Usami Ryoji, Kan Daisuke, Kawamura Izuru, Kawasaki Yuta, Sato Mic … Show more authors
Kashiwabara Daisuke, Kondo Keiko, Usami Ryoji, Kan Daisuke, Kawamura Izuru, Kawasaki Yuta, Sato Michio, Nittami Tadashi, Suzuki Ichiro, Katahira Masato, Takeda Minoru Hide authors
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES 183 992 - 1001 2021.7 [Reviewed]
DOI Web of Science PubMed CiNii Research
Language:English Publishing type:Research paper (scientific journal) Publisher:Elsevier Joint Work
Sphaerotilus natans is a filamentous sheath-forming bacterium commonly found in activated sludge. Its sheath is assembled from a thiolic glycoconjugate called thiopeptidoglycan. S. montanus ATCC-BAA-2725 is a sheath forming member of stream biofilms, and its sheath is morphologically similar to that of S. natans. However, it exhibits heat susceptibility, which distinguishes it from the S. natans sheath. In this study, chemical composition and solid-state NMR analyses suggest that the S. montanus sheath is free of cysteine, indicating that disulfide linkage is not mandatory for sheath formation. The S. montanus sheath was successfully solubilized by N-acetylation, allowing solution-state NMR analysis to determine the sugar sequence. The sheath was susceptible to thiopeptidoglycan lyase prepared from the thiopeptidoglycan-assimilating bacterium, Paenibacillus koleovorans. The reducing ends of the enzymatic digests were labeled with 4-aminobenzoic acid ethyl ester, followed by HPLC. Two derivatives were detected, and their structures were determined. We found that the sheath has no peptides and is assembled as follows: [-+4)-beta-D-GlcA-(1-+4)-beta-D-Glc-(1-+3)-beta-D-GalNAc-(1-+4)-alpha-D-GalNAc-(1-+4)-alpha-D-GalN-(1-+]n (beta-D-Glc and alpha-D-GalNAc are stoichiometrically and substoichiometrically 3-O-acetylated, respectively). Thiopeptidoglycan lyase was thus confirmed to cleave the 1,4 linkage between alpha-D-GalN and beta-D-GlcA, regardless of the peptide moiety. Furthermore, vital fluorescent staining of the sheath demonstrated that elongation takes place at the tips, as with the S. natans sheath. (c) 2021 Elsevier B.V. All rights reserved.
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Minoru Takeda, Keiko Kondo, Ryo Tominaga, Honomi Mori, Mana Kato, Ryoji Usami, Tomoi Murakami, Kazu … Show more authors
Minoru Takeda, Keiko Kondo, Ryo Tominaga, Honomi Mori, Mana Kato, Ryoji Usami, Tomoi Murakami, Kazuyoshi Ueda, Ichiro Suzuki, Masato Katahira Hide authors
Bioscience, Biotechnology, and Biochemistry 84 ( 10 ) 2085 - 2095 2020.10 [Reviewed]
Language:English Publishing type:Research paper (scientific journal) Joint Work
Review Papers 【 display / non-display 】
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マイクロバイオームの利用と理解
鈴木市郎
環境バイオテクノロジー学会誌 19 ( 1 ) 13 - 19 2019.6
Language:Japanese Publishing type:Article, review, commentary, editorial, etc. (bulletin of university, research institution) Single Work
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土壌汚染の微生物浄化への加温の影響
小林剛, 田小維, 鈴木市郎, 山崎祐二, 清水 孝昭
用水と排水 59 ( 10 ) 2017.10
Language:Japanese Publishing type:Article, review, commentary, editorial, etc. (scientific journal) Publisher:産業用水調査会 Joint Work
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Tasty drinking water treated by microbes - the removal of metal ions from groundwater using microbial consortia.
Ichiro Suzuki
Seibutsu-kogaku kaishi 90 ( 4 ) 170 - 173 2013.4
Language:Japanese Publishing type:Article, review, commentary, editorial, etc. (other) Single Work
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Biological oxidation of manganese ion
Ichiro Suzuki, Atsushi Kawabe, Naoya Yamamoto
Inspection Engineering 17 ( 3 ) 23 - 28 2012.3
Language:Japanese Publishing type:Article, review, commentary, editorial, etc. (scientific journal) Joint Work
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Formation mechanism of manganese-rich deposit
Atsushi Kawabe, Ichiro Suzuki, Naoya Yamamoto, Minoru Hamada
Zairyo-to-Kankyo 59 ( 2 ) 50 - 55 2010.2
Language:Japanese Publishing type:Article, review, commentary, editorial, etc. (scientific journal) Joint Work
Awards 【 display / non-display 】
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2023.8 (一財)国土技術センター、(一財)沿岸技術研究センター 汚染地盤の加温式原位置高速バイオ浄化技術;(副題) CO₂排出量の少ない非掘削浄化技術「温促バイオ®」
Individual or group name of awards:舟川将史, 清水孝昭 (竹中工務店), 菅沼優巳 (竹中土木), 小林剛, 鈴木市郎 (横浜国大院), 西垣誠 (岡山大)
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第48回環境賞 環境大臣賞
2021.5 国立環境研究所、日刊工業新聞社 汚染地盤の加温式原位置浄化技術
Individual or group name of awards:株式会社竹中工務店 清水孝昭 他、株式会社竹中土木 小西一生 他、岡山大学 西垣誠 他、横浜国立大学 小林剛 他
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16th Engineering Special Encouragement Award
2024.7 The Engineering Advancement Association of Japan (ENAA) Temperature-Enhanced Rapid BIoremediation System "Onsoku-Bio+" Development Team
Individual or group name of awards:Masasi Funakawa, Masami Suganuma, Takeshi Kobayashi, Ichiro Suzuki, Makoto Nishigaki, Naoko Yoshida, et al.
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2022.6 (公社)地盤工学会 地盤の均質な加温・注入制御を可能とするVOCs汚染土壌の原位置加温式高速バイオ浄化システムの開発
Individual or group name of awards:(株)竹中工務店、(株)竹中土木、横浜国立大学、岡山大学
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2022.6 公益社団法人 土木学会 土壌・地下水汚染浄化の省CO2を達成する加温式原位置高速バイオ浄化技術の開発
Individual or group name of awards:(株)竹中工務店 山崎祐二ほか、(株)竹中土木 小西一生ほか、岡山大学 西垣誠ほか、横浜国立大学 小林剛ほか、名古屋工業大学 吉田奈央子
Grant-in-Aid for Scientific Research 【 display / non-display 】
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Effects of environmental factors on specific growth rates of individual microorganisms in bioprocess using microbial consortia
2020.4 - 2023.3
Grant-in-Aid for Scientific Research Grant-in-Aid for Scientific Research(C)
Investigator(s):Ichiro SUZUKI
Grant type:Competitive
Presentations 【 display / non-display 】
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微生物担体の表面電位の違いが硝化細菌叢に与える影響
鈴木市郎、三浦美杏、香川将輝、武田穣
日本水処理生物学会第58回大会 2022.11 日本水処理生物学会
Event date: 2022.11
Language:Japanese Presentation type:Oral presentation (general)
Venue:熊本大学, 熊本 Country:Japan
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硝化細菌叢の時系列データ解析による各細菌の比増殖速度の導出
堀池光、長﨑あゆ音、矢部桃子、鈴木市郎、武田穣
日本水処理生物学会第58回大会 2022.11 日本水処理生物学会
Event date: 2022.11
Language:Japanese Presentation type:Oral presentation (general)
Venue:熊本大学, 熊本 Country:Japan
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VOC汚染サイトにおける加温式原位置浄化法の適用
北村岳, 山﨑祐二, 稲葉薫, 奧田信康, 小林剛, 鈴木 市郎
第26回 地下水・土壌汚染とその防止対策に関する研究集会 2021.6 (一社)土壌環境センター
Event date: 2021.6
Language:Japanese Presentation type:Oral presentation (general)
Venue:オンライン Country:Japan
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Distributions of bacterial consortia in effluent and soil during thermal-enhanced treatment of chlorinated volatile organic compounds in soil columns.
The 23th Symposium of Japan Society on Water Environment Japan Society on Water Environment
Event date: 2020.9
Language:Japanese Presentation type:Oral presentation (general)
Venue:Online
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Distributions of bacterial consortia in effluent and soil during thermal-enhanced treatment of chlorinated volatile organic compounds in soil columns.
I. Suzuki, X. Tian, M. Kawamura, Y. Azuma, Y. Yamazaki, N. Okuda, T. Kobayashi
2019 Japanese Society of Microbial Ecology Annual Meeting Japanese Society of Microbial Ecology
Event date: 2019.9
Language:Japanese Presentation type:Poster presentation
Venue:Yamanashi University
Past of Collaboration and Commissioned Research 【 display / non-display 】
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Characterization of Mn-oxidizing bacteria isolated from Mn-rich deposits involved in the corrosion of copper alloy condenser tubes.
Cooperative Research within Japan
Project Year: 2006.12 - 2007.3
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Biological treatment for removal of Arsenic, iron and manganese from groundwater.
Cooperative Research within Japan
Project Year: 2006.9 -
Charge of off-campus class subject 【 display / non-display 】
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システム生物学
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環境微生物学
Committee Memberships 【 display / non-display 】
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The Society fo Biotechnology, Japan
2013.5
Committee type:Academic society
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The Society fo Biotechnology, Japan
2007.5
Committee type:Academic society
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日本生物工学会東日本支部
1998.5 支部委員
Committee type:Academic society
Social Contribution(Extension lecture) 【 display / non-display 】
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日本生物工学会東日本支部 第16回学生発表討論会
Role(s): Host, Planner, Logistic support
日本生物工学会東日本支部 オンライン開催 2021.11
Audience: University students, Graduate students, Researchers
Type:Lecture
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日本生物工学会東日本支部 第15回学生発表討論会
Role(s): Host, Planner, Logistic support
日本生物工学会東日本支部 オンライン開催 2020.11
Audience: University students, Graduate students, Researchers
Type:Lecture
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日本生物工学会東日本支部 第14回学生発表討論会
Role(s): Host, Planner, Logistic support
日本生物工学会東日本支部 八王子 2019.11
Audience: University students, Graduate students, Researchers
Type:Lecture
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日本生物工学会東日本支部 第13回学生発表討論会
八王子 2018.10
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日本生物工学会東日本支部 第12回学生発表討論会
八王子 2017.11