Updated on 2025/06/01

写真a

 
EZURE Riyosuke
 
Organization
Academic Assembly Institute of Science and Technology SEISAN DESIGN KOUGAKU KEIRETU Assistant Professor
Graduate School of Science and Technology Advanced Materials Science and Technology Assistant Professor
Faculty of Engineering Department of Engineering Assistant Professor
Title
Assistant Professor
External link

Research Interests

  • スタティックミキサー

  • 固液スラリー

  • ガスハイドレート

  • 分離工学

Research Areas

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Transport phenomena and unit operations

  • Environmental Science/Agriculture Science / Environmental load reduction and remediation

Research History (researchmap)

  • Niigata University   Assistant Professor

    2025.4

      More details

  • Anan National College of Technology   Department of Creative Technology Engineering

    2023.4 - 2025.3

      More details

    Country:Japan

    researchmap

  • Niigata University

    2020.4 - 2023.3

      More details

Research History

  • Niigata University   Advanced Materials Science and Technology, Graduate School of Science and Technology   Assistant Professor

    2025.4

  • Niigata University   Department of Engineering, Faculty of Engineering   Assistant Professor

    2025.4

  • Niigata University   Institute of Science and Technology, Academic Assembly   Assistant Professor

    2025.4

Education

  • Niigata University   Graduate School of Science and Technology   Specialized Course of Advanced Materials Science and Technology

    2020.4 - 2023.3

      More details

    Notes: (博士)

    researchmap

  • Niigata University   Graduate School of Science and Technology   Specialized Course of Advanced Materials Science and Technology

    2018.4 - 2020.4

      More details

    Notes: (修士)

    researchmap

  • Niigata University   Faculty of Engineering   Department of Chemistry and Chemical Engineering

    2014.4 - 2018.3

      More details

Professional Memberships

 

Papers

  • Evaluation of mass transfer characteristics of gas molecules during hydrate formation by using dimensionless numbers Reviewed

    Ryosuke Ezure, Shun Takano, Hideo Tajima

    Chemical Engineering Research and Design   218   1 - 7   2025.6

     More details

    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.cherd.2025.04.031

    researchmap

  • Prediction of the mean velocity following a flow-pattern transition and apparent viscosity for various fluorinated gas hydrate slurries in a pipeline Reviewed

    Hideo Tajima, Tomoya Sagawa, Ryosuke Ezure, Hiroyuki Komatsu

    Chemical Engineering Research and Design   218   400 - 407   2025.6

     More details

    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.cherd.2025.05.006

    researchmap

  • Assessment of the gas discharge characteristics during gas recovery by hydrate decomposition Reviewed

    Daiki Nakano, Ryosuke Ezure, Ryoka Seki, Yosuke Sekimoto, Hiroyuki Komatsu, Hideo Tajima

    Journal of Environmental Chemical Engineering   12 ( 6 )   114467 - 114467   2024.12

     More details

    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.jece.2024.114467

    researchmap

  • Absorption of CO<sub>2</sub> by Tetra-<i>n</i>-Butylammonium Bromide Semiclathrate Hydrate Slurries in a Bubble Column with Temperature Swing Reviewed

    Hiroyuki Komatsu, Hideki Okoshi, Ryosuke Ezure, Hideo Tajima

    Industrial & Engineering Chemistry Research   63 ( 22 )   9998 - 10008   2024.5

     More details

    Publishing type:Research paper (scientific journal)   Publisher:American Chemical Society (ACS)  

    DOI: 10.1021/acs.iecr.4c00237

    researchmap

  • Assessment of flow pattern and rheological properties of SF6 hydrate slurry Reviewed

    Tomoya Sagawa, Ryosuke Ezure, Hiroyuki Komatsu, Hideo Tajima

    Chemical Engineering Research and Design   194   77 - 86   2023.6

     More details

    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.cherd.2023.04.043

    researchmap

  • Novel SF6 gas concentration method using hydrate-based gas uptake and sweating process Reviewed

    Ryosuke Ezure, Yuma Arai, Daiki Nakano, Hiroyuki Komatsu, Hideo Tajima

    Separation and Purification Technology   305   122441 - 122441   2023.1

     More details

    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.seppur.2022.122441

    researchmap

  • Flow characteristics of hydrofluorocarbon gas hydrate slurries under various conditions in a loop tube Reviewed

    Ryosuke Ezure, Tomoya Sagawa, Tatsuya Horiguchi, Yuma Arai, Hiroyuki Komatsu, Kazuaki Yamagiwa, Hideo Tajima

    Chemical Engineering Science   246   116974 - 116974   2021.12

     More details

    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.ces.2021.116974

    researchmap

  • Study on Mass Transfer Characteristics of Hydrate-based Gas Absorber Reviewed

    Shun Takano, Ryosuke Ezure, Yusuke Takahashi, Hiroyuki Komatsu, Kazuaki Yamagiwa, Hideo Tajima

    MATEC Web of Conferences   333   04002 - 04002   2021.1

     More details

    Publishing type:Research paper (scientific journal)   Publisher:EDP Sciences  

    Hydrated-based gas separation is a method capable of selectively separating and recovering greenhouse gases. Although a conventional hydrate-based gas separation apparatus is a batch or a semi-batch system, continuous operation is preferable to increase the throughput of gas without changing the apparatus volume. Recently, we proposed a flow type apparatus to allow continuous operation of hydrate formation (absorption) and subsequent decomposition (desorption). The aim of this study is to investigate the mass transfer characteristics of the continuous apparatus using the HFC134a-N2 mixed gas system. The volumetric mass transfer coefficient was calculated especially during a steady state of gas absorption. Besides, we compared mass transfer performance between the hydrate-based gas absorber and a conventional bubble column. Sodium dodecyl sulfate was used as a hydrate dispersant. In the flow type apparatus, the gas-liquid contact was good and the hydrate slurry state was observed during hydrate formation. In the surfactant solution, the volumetric mass transfer coefficient increased in comparison with that in water. The volumetric mass transfer coefficient with hydrate was higher than that of the bubble column. These results suggest that hydrate formation improves gas absorption performance.

    DOI: 10.1051/matecconf/202133304002

    researchmap

  • Observation of Pseudo Plume Behavior by Hydrate Sedimentary Layer Decomposition Reviewed

    Yusuke Takahashi, Ryosuke Ezure, Shun Takano, Hiroyuki Komatsu, Kazuaki Yamagiwa, Hideo Tajima

    MATEC Web of Conferences   333   02007 - 02007   2021.1

     More details

    Publishing type:Research paper (scientific journal)   Publisher:EDP Sciences  

    We are focusing on the practical use of methane hydrate. For recovery and use of it as an energy resource, it is necessary to consider the possibility of clogging in the recovery pipe due to the rehydration of bubbles. The purpose of this research was to observe experimentally and evaluate theoretically the decomposition behavior of hydrate sedimentary layer and the rising behavior of bubbles generated by hydrate decomposition. Chlorodifluoromethane was used as a low pressure model gas of methane. Hydrate sedimentary layer was produced by cooling and pressurizing water in countercurrent contact with gas using a hydrate formation recovery device. The recovered hydrate was decomposed by the heating or depressurization method, without flowing water. Two theoretical rising velocities were derived from the theoretical value with using the Navier-Stokes equation or the values in consideration of the bubble shape and hydrate film existence. The experimental rising velocities of small spherical bubbles radius agreed well with the theoretical value by the Navier-Stokes equation. The relatively large elliptical bubbles showed a behavior close to the theoretical value of bubble with hydrate film. Under the pressure and temperature conditions closer to the hydrate equilibrium line, almost no generated bubbles could be identified visually.

    DOI: 10.1051/matecconf/202133302007

    researchmap

  • Examination of the Heat Transfer Model in Gas–Liquid–Solid Three Phases in Presence of Gas Hydrate Particle Reviewed

    Ryosuke Ezure, Yusuke Takahashi, Shun Takano, Hiroyuki Komatsu, Kazuaki Yamagiwa, Hideo Tajima

    MATEC Web of Conferences   333   04001 - 04001   2021.1

     More details

    Publishing type:Research paper (scientific journal)   Publisher:EDP Sciences  

    Hydrate-based gas separation is often investigated using batch or semi-batch operations. To increase the throughput of the gas mixture without increasing the apparatus volume, it is preferable to perform a continuous operation of hydrate-based gas separation. Therefore, we proposed a flow-type apparatus for performing continuous formation with passing gaseous mixture and subsequently decomposition with passing gas hydrate particles. Characteristics of multiple fluid and heat and mass transfer of hydrate slurry are essential for the efficient operation of the apparatus. In this study, we focused on heat transfer characteristics in the presence of bubbles in water and surfactant solution. First, an apparent overall heat transfer coefficient under pressure during steady operation of the apparatus was calculated on a simple assumption. Next, to control the hydrate amount and position of hydrate-decomposition and hydrate-formation in the apparatus, we focused on the temperature profile of the inside fluid. A heat transfer model using heat balance of defining heat of hydrate-formation and heat transfer of agitation of fluid was made for hydrate-based gas separation apparatus. To evaluate the validity of the heat transfer model, a calculation value is compared with the experimental value.

    DOI: 10.1051/matecconf/202133304001

    researchmap

  • Evaluation of the gas absorption performance of a flow-type hydrate-based gas uptake system Reviewed

    Ryosuke Ezure, Yuto Matsumoto, Shun Takano, Mana Shimizu, Hiroyuki Komatsu, Kazuaki Yamagiwa, Hideo Tajima

    Chemical Engineering Research and Design   156   131 - 137   2020.4

     More details

    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.cherd.2020.01.031

    researchmap

▶ display all

Presentations

  • ハイドレート化ガス放散における物質移動特性の無次元数での評価

    中野 大輝, 関 諒夏, 江連 涼友, 小松 博幸, 多島 秀男

    2023年化学工学会第54回秋季大会 福岡大会 

     More details

    Event date: 2023.9

    researchmap

  • Rheological Properties of SF6 Gas hydrate Slurry with Surfactant in Horizonal Circular Pipe

    Hideo Tajima, Tomoya Sagawa, Ryosuke Ezure, Hiroyuki Komatsu

    The 15th International Conference on the Pyhsics and Chemistry of Ice 

     More details

    Event date: 2023.9

    researchmap

  • Effect of Gas and Water Flow Velocities on Flow Pattern and Gas Uptake of Hydrate Slurries in a Scaled-Up Vertical Plug Flow Reactor

    Ryoka seki, Ryosuke Ezure, Hiroyuki Komatsu, Hideo Tajima

    The 15th International Conference on the Pyhsics and Chemistry of Ice 

     More details

    Event date: 2023.9

    researchmap

  • Evaluation of Mass Transfer During Clathrate Gas Hydrate Formation by Using Dimensionless Number

    Ryosuke Ezure, Daiki Nakano, Ryoka seki, Hiroyuki Komatsu, Hideo Tajima

    The 15th International Conference on the Pyhsics and Chemistry of Ice 

     More details

    Event date: 2023.9

    researchmap

  • Examination of SF6 gas concentration method using hydrate-based gas uptake and sweating process under constant temperature with reducing

    Ryosuke Ezure, Hideo Tajima

    The 6th NIT-NUU Bilateral Academic Conference 2023 

     More details

    Event date: 2023.7

    researchmap

  • R410A系でのハイドレート相平衡モデリングと測定

    島村遼史, 江連涼友, 小松博幸, 多島秀男

    化学工学会新潟大会2022 

     More details

    Event date: 2022.11

    researchmap

  • フッ素系ガスハイドレートスラリーの流動特性と様式の比較

    佐川智哉, 江連涼友, 小松博幸, 多島秀男

    化学工学会第53秋季大会 

     More details

    Event date: 2022.9

    researchmap

  • ハイドレート化ガス放散における物質移動特性の評価

    中野大輝, 江連涼友, 小松博幸, 多島 秀男

    化学工学会第53秋季大会 

     More details

    Event date: 2022.9

    researchmap

  • ガスハイドレートを用いた発汗操作によるガス濃縮プロセスの検討

    江連涼友, 小松博幸, 多島秀男

    化学工学会第53回秋季大会 

     More details

    Event date: 2022.9

    researchmap

  • ループ管型流通装置中におけるHFC134aハイドレートスラリーの流動挙動

    佐川智哉, 江連涼友, 小松博幸, 山際和明, 多島秀男

    化学工学会第52回秋季大会 

     More details

    Event date: 2021.9

    researchmap

  • ハイドレート化ガス吸収装置における物質移動特性に与える水流量の影響

    江連涼友, 中野大輝, 小松博幸, 山際和明, 多島秀男

    化学工学会第52回秋季大会 

     More details

    Event date: 2021.9

    researchmap

  • ハイドレート化ガス分離プロセス条件がメモリー効果に与える影響

    松川和海, 江連涼友, 小松 博幸, 山際 和明, 多島 秀男

    化学工学会秋田大会 

     More details

    Event date: 2021.7

    researchmap

  • R134aハイドレートを用いたNaCl水溶液の脱塩

    新井勇雅, 江連涼友, 小松博幸, 山際和明, 多島秀男

    化学工学会86年会 

     More details

    Event date: 2021.3

    researchmap

  • ハイドレート化ガス吸収装置における物質移動特性に界面活性剤が与える影響

    江連涼友, 高野駿, 小松博幸, 山際和明, 多島秀男

    化学工学会86年会 

     More details

    Event date: 2021.3

    researchmap

  • Dissociation behavior of methane hydrates by hydrate inhibitors

    Ryosuke EZURE, Hideo TAJIMA, Yoshitaka YAMAMOTO, Sanehiro MUROMACHI

    APCChE 2019 

     More details

    Event date: 2019.9

    researchmap

  • Study on mass transfer characteristics of hydrate-based gas absorber

    Shun TAKANO, Ryosuke EZURE, Yusuke TAKAHASHI, Hiroyuki KOMATSU, Kazuaki YAMAGIWA, Hideo TAJIMA

    APCChE 2019 

     More details

    Event date: 2019.9

    researchmap

  • Observation of pseudo plume behavior by hydrate sedimentary layer decomposition

    Yusuke TAKAHASHI, Ryosuke EZURE, Shun TAKANO, Hiroyuki KOMATSU, Kazuaki YAMAGIWA, Hideo TAJIMA

    APCChE 2019 

     More details

    Event date: 2019.9

    researchmap

  • Examination of the heat transfer model in Gas-Liquid-Solid three phase in presence of gas hydrate particle

    Ryosuke EZURE, Yusuke TAKAHASHI, Shun TAKANO, Hiroyuki KOMATSU, Kazuaki YAMAGIWA, Hideo TAJIMA

    APCChE 2019 

     More details

    Event date: 2019.9

    researchmap

  • ハイドレート化ガス分離装置連続操作のための見かけ上の総括伝熱係数の検討

    江連涼友, 小松博幸, 山際和明, 多島秀男

    第27回日本エネルギー学会大会 

     More details

    Event date: 2018.8

    researchmap

▶ display all

Awards

  • 令和4年度 新潟大学学長賞

    2023.3   新潟大学  

     More details

  • 第6回 サイエンス・インカレ・コンソーシアム奨励賞(グッドパフォーマンス賞)

    2017.3   文部科学省  

     More details

Research Projects

  • 若手技術者研修

    2024.5 - 2025.3

    Research category:受託研究

    Awarding organization:日亜化学工業(株)

    小西智也, 吉田岳人, 西野精一, 松浦史法, 伊丹 伸, 藤原健志, 上田康平, 江連涼友, 大谷卓, 杉山雄樹

      More details

    Authorship:Coinvestigator(s) 

    researchmap

  • 温室効果ガスの分離・回収装置の設計に向けたガスハイドレートスラリーの流動状態の制御方法の開発

    2024.4 - 2025.3

    System name:岩谷科学技術研究助成金

    Awarding organization:公益財団法人 岩谷直治記念財団

      More details

  • 若手技術者研修

    2023.6 - 2024.3

    Research category:受託研究

    Awarding organization:日亜化学工業(株)

    小西智也,吉田岳人,西野精一,松浦史法,伊丹 伸,上田康平,藤原健志,杉山雄樹,江連涼友

      More details

    Authorship:Coinvestigator(s) 

    researchmap

  • 経済理論モデルを利用した分析から捉えるハイドレート化ガス分離法の利用可能性の評価

    2021.10 - 2023.3

    System name:新潟大学 未来のライフ・イノベーションを創出するフロントランナー育成プロジェクト(JST次世代研究者挑戦的研究プログラム)

      More details

  • ハイドレート化ガス分離装置での移動現象の解析評価

    2020 - 2021

    System name:奨学研究費

    Awarding organization:公益財団法人 新潟工学振興会

      More details

 

Teaching Experience (researchmap)

▶ display all