Details of the Researcher

PHOTO

Kousuke Hiromori
Section
Graduate School of Engineering
Job title
Assistant Professor
Degree
  • 博士(工学)(東北大学)

  • 修士(工学)(東北大学)

Research History 1

  • 2018/05 - Present
    Tohoku University Assistant Professor

Education 3

  • Tohoku University Graduate School of Engineering Department of Chemical Engineering

    2015/04 - 2018/03

  • Tohoku University Graduate School of Engineering Department of Chemical Engineering

    2013/04 - 2015/03

  • Tohoku University Faculty of Engineering Department of Applied Chemistry, Chemical Engineering and Biomolecular Engineering

    2009/04 - 2013/03

Professional Memberships 6

  • 日本イオン交換学会

  • 日本吸着学会

  • 分離技術会

  • JAPAN SOCIETY FOR FOOD ENGINEERING

  • 日本油化学会

  • 日本化学工学会

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Research Interests 3

  • biomass

  • separation

  • reaction engineering

Research Areas 5

  • Nanotechnology/Materials / Green/sustainable/environmental chemistry /

  • Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Transfer phenomena and unit operations /

  • Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Catalytic processes and resource chemistry /

  • Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Transfer phenomena and unit operations /

  • Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Chemical reaction and process system engineering / reaction engineering

Awards 9

  1. 市村地球環境学術賞

    2024/04 公益財団法人 市村清新技術財団 多様な廃棄油をバイオ燃料に変換可能な革新的製造プロセス

  2. 若手研究者奨励賞

    2023/10 公益社団法人 日本油化学会関東支部 油滓の資源化を目指した電解プロセス開発に関する研究

  3. 9th Monozukuri Japan Award Excellence Award

    2023/01 Ministry of Economy, Trade and Industry

  4. Edwin N. Frankel Award for Best Paper in Lipid Oxidation and Quality

    2022/05 American Oil Chemists' Society Quantitative Evaluation of Oxidative Stability of Biomembrane Lipids in the Presence of Vitamin E

  5. 化学工学会論文審査賞

    2022/04 化学工学会

  6. Audience Award

    2021/09 Falling Walls Venture Qualifier Sendai BREAKING THE WALL OF BIOECONOMY

  7. 化学工学会第49回秋季大会 SIS部会 技術賞

    2017/09 化学工学会 競争吸着モデルに基づく天然ビタミンE高純度化プロセスの設計

  8. 化学工学会第82年会 学生奨励賞

    2017/03 化学工学会 強塩基性樹脂を用いたビタミンE類回収におけるカラム分割の影響

  9. ICRBO 2016 Best Poster Presentation Award

    2016/10 INTERNATIONAL ASSOCIATION OF RICE BRAN OIL Novel Separation Technology for Recovering Pure Vitamin E without Molecular Distillation

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Papers 28

  1. Visualization of the packing structure of packed beds with micron-sized particles using confocal microscopy to estimate their pressure drop Peer-reviewed

    Hiroki Nishida, Tom A.J. Welling, Hikaru Namigata, Kousuke Hiromori, Keishi Suga, Daisuke Nagao, Kanako Watanabe

    Chemical Engineering Journal 515 163519-163519 2025/07

    Publisher: Elsevier BV

    DOI: 10.1016/j.cej.2025.163519  

    ISSN: 1385-8947

  2. Simultaneous extraction of caffeic acid and production of cellulose microfibrils from coffee grounds using hydrodynamic cavitation in a Venturi tube Peer-reviewed

    Hitoshi Soyama, Kousuke Hiromori, Naomi Shibasaki-Kitakawa

    Ultrasonics Sonochemistry 118 107370-107370 2025/07

    Publisher: Elsevier BV

    DOI: 10.1016/j.ultsonch.2025.107370  

    ISSN: 1350-4177

  3. Insight into the generation network of reactive oxygen species in H2O under nonthermal atmospheric-pressure plasma irradiation using a kinetic modeling approach Peer-reviewed

    Tsutomu Chida, Shota Sasaki, Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Toshiro Kaneko, Atsushi Takahashi

    Chemical Engineering Journal 501 157640-157640 2024/12

    Publisher: Elsevier BV

    DOI: 10.1016/j.cej.2024.157640  

    ISSN: 1385-8947

  4. Novel protection method for edible oil oxidation using insoluble antioxidant material Invited Peer-reviewed

    Atsushi Takahashi, Suguru Katori, Kousuke Hiromori, Naomi Shibasaki-Kitakawa

    Vitamins(Japan) 98 (7) 347-352 2024/07

  5. Kolbe Electrolysis for Recycling Non-Aqueous Fatty Acid Salts Peer-reviewed

    Kousuke Hiromori, Yoichi Konno, Keisuke Katagami, Atsushi Takahashi, Naomi Shibasaki-Kitakawa

    Journal of Chemical Engineering of Japan 57 (1) 2024/03/22

    Publisher: Informa UK Limited

    DOI: 10.1080/00219592.2024.2332621  

    ISSN: 0021-9592

    eISSN: 1881-1299

  6. Application of nonthermal atmospheric‐pressure plasma irradiation as a new method for noncatalytic liquid‐phase selective oxidation of polyhydric alcohols Peer-reviewed

    Tsutomu Chida, Kousuke Hiromori, Naomi Shibasaki‐Kitakawa, Shota Sasaki, Toshiro Kaneko, Atsushi Takahashi

    Plasma Processes and Polymers 2023/11/16

    Publisher: Wiley

    DOI: 10.1002/ppap.202300163  

    ISSN: 1612-8850

    eISSN: 1612-8869

    More details Close

    Abstract We have developed a new liquid‐phase noncatalytic selective oxidation of polyhydric alcohols such as glycerol. This method involves the use of a nonthermal atmospheric‐pressure plasma instead of precious‐metal catalysts. We found that noncatalytic selective oxidation of glycerol achieved a conversion comparable to that achieved by gold‐catalyzed oxidation, and the desired glyceric acid, which is a pharmaceutical raw material, was obtained. When the solution pH was changed from strongly alkaline to neutral, the main reaction switched from the one that occurs in the presence of gold catalysts to the one that occurs in the presence of platinum catalysts. These results suggest that the reactive oxygen species generated by nonthermal atmospheric‐pressure plasma irradiation vary depending on the solution pH.

  7. Highly Accurate Prediction of Edible Oil Oxidative Stability by Multivariate Analysis Incorporating Chemiluminescence Data Peer-reviewed

    Yuta Yoshida, Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Atsushi Takahashi

    ACS Food Science & Technology 2023/10/26

    DOI: 10.1021/acsfoodscitech.3c00364  

  8. Mechanical Properties and Friction Dynamics of Organogels Solidified with Rice Paraffin Peer-reviewed

    Yoshimune Nonomura, Haruna Ogura, Tatsunari Ueda, Masashi Shibata, Kousuke Hiromori, Naomi Shibasaki-Kitakawa

    Journal of Oleo Science 2023/05

    Publisher: Japan Oil Chemists' Society

    DOI: 10.5650/jos.ess23023  

    ISSN: 1345-8957

    eISSN: 1347-3352

  9. Comprehensive Study on Kinetic Modeling of Liquid-Phase Selective Oxidation Using Au-Supported Catalysts for Efficient Production of Value-Added Chemicals from Glycerol Peer-reviewed

    Tsutomu Chida, Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Naoki Mimura, Aritomo Yamaguchi, Atsushi Takahashi

    Industrial & Engineering Chemistry Research 62 (18) 6932-6942 2023/04/25

    Publisher: American Chemical Society (ACS)

    DOI: 10.1021/acs.iecr.3c00336  

    ISSN: 0888-5885

    eISSN: 1520-5045

  10. A Mass-Balance-Consistent Process Inventory Model for Ion-Exchange Resin Catalyzed Biodiesel Production Peer-reviewed

    I-Ching Chen, Kousuke Hiromori, Makiko Kato, Hajime Ohno, Naomi Shibasaki-Kitakawa, Yasuhiro Fukushima

    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN 55 (12) 349-357 2022/12/20

    Publisher: Society of Chemical Engineers, Japan

    DOI: 10.1252/jcej.17we325  

    ISSN: 0021-9592

    eISSN: 1881-1299

  11. Process design for efficient production from glycerol into high-value chemicals Invited Peer-reviewed

    Tsutomu Chida, Aritomo Yamaguchi, Atsushi Takahashi, Kousuke Hiromori, Naoki Mimura, Naomi Shibasaki-Kitakawa

    Journal of the American Oil Chemists' Society 99 (1) 105-106 2022/01

    Publisher: American Oil Chemists' Society (AOCS)

    DOI: 10.21748/wimj4199  

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    There is an urgent need to develop effective methods to use glycerol, a by-product of biodiesel production, by converting it into high-value chemicals. The by-product glycerol is contaminated with strong alkaline as a catalyst, and the environmental loads of the purification process to remove the contaminants has been a bottleneck to its utilization. As one way to solve this problem, it has been reported that glycerol can be converted to glyceric acid (GA), which is used as a pharmaceutical raw material, by partial oxidation of glycerol using an Au catalyst under alkaline condition. However, the GA yield is low because many side reactions proceed simultaneously. To construct a practical process for efficient GA production, it is necessary to both experimentally analyze the reaction mechanism and to develop a kinetic model that can quantitatively predict the reaction behavior under a wide range of conditions.The purpose of this study is to establish a methodology for process design of efficient production of GA from the by-product glycerol. In our previous study, the reaction mechanism including alkaline and the reactive oxygen species OOH, which is formed from O2 and H2O on Au catalyst, in GA formation was clarified and a kinetic model taken it into account was constructed. In present study, the model was additionally taken temperature dependency into account and enabled to predict GA yield in wide range of operating conditions. In order to design the catalysts, the relationship between GA yield and coverages of adsorbed species on active sites was investigated by the model simulation and it was revealed that the affinity between support and H2O greatly affects GA yield, suggesting that the support, which has strong interaction with H2O, increases the GA yield.

  12. Quantitative Evaluation of Oxidative Stability of Biomembrane Lipids in the Presence of Vitamin E Invited Peer-reviewed

    Atsushi Takahashi, Ryouta Takahashi, Kousuke Hiromori, Naomi Shibasaki-Kitakawa

    Journal of the American Oil Chemists' Society 97 (1) 116-116 2022/01

    Publisher: American Oil Chemists' Society (AOCS)

    DOI: 10.21748/zlem3137  

    More details Close

    In this report, the oxidation of biomembranelipids, phospholipid (LH) and cholesterol (ChH), was examined experimentally in the presence of vitamin E (VEH) by using a liposome system, which is widely used as a biomembrane model. A kinetic model was constructed by taking into account mechanisms of antioxidation and pro-oxidation by VEH and the co-oxidation mechanisms of biomembrane lipids reported previously (Takahashi et al., 2016). The model constants for VEH-related reactions were estimated based on the experimental results. The model quantitatively described the concentration profiles of LH, ChH, and VEH in biomembrane lipid oxidation under various VEH addition conditions. The estimated values of the model constants were found to be reasonable. The model simulation analyzed key reactions that effectively suppress biomembrane oxidation. During the induction period in the presence of VEH, LH was consumed only by the initiation reaction by AAPH, whereas ChH was hardly consumed, and VEH was consumed mainly by the antioxidation of LH. Furthermore, the model simulation predicted the oxidation behavior of the biomembrane under various oral ingestion conditions of VEH. The results showed that ChH oxidation, which causes various diseases, could be effectively suppressed by taking a certain dietary amount of VEH once a day to ensure the VEH concentration in the biomembrane does not decrease. The propose kinetic approach is a useful tool for providing an essential understanding of complicated reaction systems, such as biomembrane oxidation.

  13. Proposal of complete utilization system of soapstock by electrolysis Peer-reviewed

    Kousuke Hiromori, Keisuke Katagami, Atsushi Takahashi, Naomi Shibasaki-Kitakawa

    Journal of the American Oil Chemists' Society 99 (1) 103-103 2022/01

    Publisher: American Oil Chemists' Society (AOCS)

    DOI: 10.21748/sozh7797  

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    In deacidification during vegetable oil refinery, a large amount of soapstock, mainly sodium salt of fatty acid, are generated and wasted. We propose an innovative system for the complete utilization of soapstock by Kolbe electrolysis. In conventional Kolbe electrolysis, only water-soluble carboxylic acid with short alkyl chain such as acetic acid and butyric acid are decarboxylated and dimerized to produce hydrocarbons such as ethane and butane. Although fatty acid salts have long alkyl chains, they are soluble in water, and Kolbe electrolysis can be applied to them. Soapstock will be converted by electrolysis into long-chain hydrocarbons used as biofuels and, sodium hydroxide used in vegetable oil refinery. As a result of applying Kolbe electrolysis to an aqueous solution of caprylic acid sodium salt, the formation of hydrocarbons, tetradecane, and sodium hydroxide was observed. When the generated hydrocarbons were used for power generation, the generated energy was almost the same as the energy input in the electrolysis. This means that the soap stock can be reused without any external energy input. Therefore, it is suggested that this electrolysis system will be both carbon-negative and profitability.

  14. Process optimization for continuous production of sustainable biodiesel from completely non-edible biomass, lignocellulosic hydrous ethanol and waste fatty acids Peer-reviewed

    Nahian Siddique, Masato Suzue, Makiko Kato, Kousuke Hiromori, Naomi Shibasaki-Kitakawa

    Fuel 289 119884 2021/04

    DOI: 10.1016/j.fuel.2020.119884  

    ISSN: 0016-2361

  15. Process for continuous production of sugar esters of medium-chain fatty acid: effect of residence time on productivity and scale-up design Peer-reviewed

    Tomone Sasayama, Kousuke Hiromori, Atsushi Takahashi, Naomi Shibasaki-Kitakawa

    Journal of Food Engineering 305 110608-110608 2021/03

    Publisher: Elsevier BV

    DOI: 10.1016/j.jfoodeng.2021.110608  

    ISSN: 0260-8774

  16. Quantitative Evaluation of Oxidative Stability of Biomembrane Lipids in the Presence of Vitamin E Peer-reviewed

    Atsushi Takahashi, Ryota Takahashi, Kousuke Hiromori, Naomi Shibasaki‐Kitakawa

    Journal of the American Oil Chemists' Society 98 (5) 567-579 2021/03

    Publisher: Wiley

    DOI: 10.1002/aocs.12480  

    ISSN: 0003-021X

    eISSN: 1558-9331

  17. Controlling reaction selectivity for sugar fatty acid ester synthesis by using resins with different basicities Peer-reviewed

    Tomone Sasayama, Ayumu Kanezawa, Kousuke Hiromori, Atsushi Takahashi, Naomi Shibasaki-Kitakawa

    Food Chemistry 340 128100-128100 2021/03

    Publisher: Elsevier BV

    DOI: 10.1016/j.foodchem.2020.128100  

    ISSN: 0308-8146

  18. Green Process for Selective Ester Production Using Heterogeneous Resin Catalyst with Different Reaction Field Peer-reviewed

    Kousuke Hiromori, Kazuki Murakami, Atsushi Takahashi, Naomi Shibasaki-Kitakawa

    Journal of the American Oil Chemists' Society 98 (1) 111-111 2021/01

    DOI: 10.21748/am21.272  

  19. Kinetic Model for Process Design of Efficient Production of High Value-chemicals from Glycerol Invited Peer-reviewed

    Tsutomu Chida, Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Naoki Mimura, Aritomo Yamaguchi, Atsushi Takahashi

    Journal of the American Oil Chemists' Society 98 (1) 113-113 2021/01

    DOI: 10.21748/am21.366  

  20. Efficient Conversion of Glycerol into High Value‐Added Chemicals by Partial Oxidation Peer-reviewed

    Tsutomu Chida, Kousuke Hiromori, Naomi Shibasaki‐Kitakawa, Naoki Mimura, Aritomo Yamaguchi, Atsushi Takahashi

    Journal of the American Oil Chemists' Society 97 (12) 1365-1370 2020/10/27

    Publisher: Wiley

    DOI: 10.1002/aocs.12440  

    ISSN: 0003-021X

    eISSN: 1558-9331

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    Abstract Glycerol can be effectively converted to glyceric acid, a high value‐added pharmaceutical raw material, through its partial oxidation over an Au/Al2O3 catalyst under strongly basic conditions. The factors important for the highly selective production of glyceric acid were investigated experimentally. It was clarified that NaOH was involved in the glycerol activation step to a glycerol alkoxide intermediate (2, 3‐dihydroxypropoxide) in the liquid phase, then glyceric acid was formed by OOH species derived from O2 on an Au catalyst in the partial oxidation step. We have newly discovered the concerted effect of NaOH and O2 in different reaction steps.

  21. Synergistic antioxidative performance of polyamines on oxidative stress to lipid by in vitro model system Invited Peer-reviewed

    Atsushi Takahashi, Takuya Kobayashi, Mizuki Numayama, Kousuke Hiromori, Naomi Shibasaki-Kitakawa

    Journal of the American Oil Chemists' Society 97 (1) 77-77 2020/01

  22. Design of selective ester synthesis process by controlling reaction field in porous resin catalyst Invited Peer-reviewed

    Kousuke Hiromori, Kazuki Murakami, Atsushi Takahashi, Naomi Shibasaki-Kitakawa

    Journal of the American Oil Chemists' Society 97 (1) 70-71 2020/01

  23. Clarification of key factors promoting selective oxidation of glycerol into glyceric acid on Au catalyst Invited Peer-reviewed

    Tsutomu Chida, Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Naoki Mimura, Aritomo Yamaguchi, Atsushi Takahashi

    Journal of the American Oil Chemists' Society 97 (1) 69-69 2020/01

  24. Competitive Adsorption Model for Process Design of Separation and Recovery Method in Porous Type Anion-exchange Resin Peer-reviewed

    K, Hiromori, K.Kanuma, N. Shibasaki-Kitakawa

    Journal of Chemical Engineering of Japan 53 (9) 477-484 2020

    DOI: 10.1252/JCEJ.20WE066  

    ISSN: 0021-9592

  25. Cleaner separation-purification process to efficiently produce high-purity natural lipophilic phenolic compounds from by-products of vegetable oil refining Peer-reviewed

    Kousuke Hiromori, Tomone Sasayama, Naomi Shibasaki-Kitakawa

    Journal of Cleaner Production 189 223-230 2018/07

    DOI: 10.1016/j.jclepro.2018.04.012  

    ISSN: 0959-6526

  26. Novel simple process for tocopherols selective recovery from vegetable oils by adsorption and desorption with an anion-exchange resin Peer-reviewed

    Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Kazunori Nakashima, Toshikuni Yonemoto

    FOOD CHEMISTRY 194 1-5 2016/03

    DOI: 10.1016/j.foodchem.2015.07.137  

    ISSN: 0308-8146

    eISSN: 1873-7072

  27. Development of novel process for efficiently separating and purifying tocotrienols Peer-reviewed

    Naomi Shibasaki-Kitakawa, Kousuke Hiromori, Siqingaowa Borjigin, Takahumi Sekine, Yoshikazu Amano, Takehiko Takahashi, Toshiyuki Kimura, Toshikuni Yonemoto

    Japan Journal of Food Engineering 17 (1) 23-31 2016

    Publisher: Japan Society for Food Engineering

    DOI: 10.11301/jsfe.17.23  

    ISSN: 1345-7942

  28. Production of high quality biodiesel from waste acid oil obtained during edible oil refining using ion-exchange resin catalysts Peer-reviewed

    Naomi Shibasaki-Kitakawa, Kousuke Hiromori, Toru Ihara, Kazunori Nakashima, Toshikuni Yonemoto

    FUEL 139 11-17 2015/01

    DOI: 10.1016/j.fuel.2014.08.024  

    ISSN: 0016-2361

    eISSN: 1873-7153

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Misc. 7

  1. 産業構造全体の俯瞰が再現性の高い理論を産みだす Invited

    廣森 浩祐

    incu・be 59 6-7 2022/12

  2. Applications of Ion Exchange Resins Invited

    Kousuke Hiromori

    2022/09

  3. イオン交換樹脂による吸着を利用した分離精製プロセスの設計法 Invited

    廣森浩祐

    化学工学会東北支部 NEWS LETTER 116 9-12 2022/01

  4. 自動化された医薬品合成システム わずかなレシピ変更で多様な誘導体を合成 Invited

    廣森浩祐

    月間化学 76 68-69 2021/10

  5. イオン交換樹脂を触媒・吸着剤とした天然ビタミンE類の分離回収プロセスの開発 Invited

    廣森 浩祐

    分離技術 49 (3) 171-177 2019/05

  6. こめ油からのビタミンE類の分離技術 Invited

    廣森 浩祐, 北川 尚美

    オレオサイエンス 17 (6) 253-259 2017/06

  7. 選択的なイオン交換による吸着を利用したビタミンE類の高純度化 Invited

    廣森浩祐, 笹山知嶺, 北川尚美

    ビタミンE研究の進歩 17 63-68 2016/12

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Books and Other Publications 3

  1. Development and Application of Phase Change Materials (PCM) for Thermal Management

    Kousuke Hiromori, Naomi Shibasaki-Kitakawa

    CMC Publishing CO.,LTD. 2024/04/26

    ISBN: 9784781317991

  2. Biodiesel Production: Feedstocks, Catalysts and Technologies

    2022/06

    ISBN: 9781119771333

  3. 分離プロセスの最適化とスケールアップの進め方

    廣森 浩祐

    技術情報協会 2019/11

    ISBN: 9784861049064

Presentations 25

  1. 油滓の資源化を目指した電解プロセス開発に関する研究 Invited

    廣森 浩祐

    第3回油化学セミナー 2024/01/26

  2. Design of Column-type Separation Technology based on Computational Chemistry Approach Invited

    Kousuke Hiromori

    CES-CHEM2023 2023/12/07

  3. 課題解決のためのプロセス設計—電気化学によるアップリサイクル— Invited

    廣森 浩祐

    第33回化学工学一関セミナー 2023/11/17

  4. 低温大気圧プラズマを用いた触媒フリーの選択酸化反応場の設計 Invited

    千田 勤, 廣森 浩祐, 北川 尚美, 高橋 厚

    化学工学会第54回秋季大会 2023/09/13

  5. 化学プロセスにおける速度式の求め方と設計・スケールアップへの応用 Invited

    廣森 浩祐

    R&D支援センター技術セミナー 2023/06/05

  6. Non-catalytic selective oxidation of glycerol under mildcondition by low-temperature atmospheric pressure plasmairradiation Invited

    Tsutomu Chida, Yuya Nakagaki, Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Shota Sasaki, Atsushi Takahashi

    2023AOCS Annual Meeting & Expo 2023/05/02

  7. 反応速度式を用いた反応器およびプロセスの設計とスケールアップ Invited

    廣森浩祐

    化学反応器スケールアップへ向けた反応速度式の求め方とその活用 2022/12/09

  8. 経済的な資源循環を実現するマルチ生産プロセスの設計 Invited

    北川 尚美, 廣森 浩祐, 加藤 牧子

    化学工学会第53回秋季大会 2022/09/14

  9. 反応・分離プロセスの設計とスケールアップのポイント Invited

    廣森浩祐

    R&D支援センター技術セミナー 2022/06/28

  10. イオン交換樹脂を用いたグリーンプロセスの設計 Invited

    廣森浩祐

    イオン交換樹脂の構造,種類とその応用・評価・メンテ技術 2022/06/03

  11. Quantitative Evaluation of Oxidative Stability of Biomembrane Lipids in the Presence of Vitamin E International-presentation Invited

    Atsushi Takahashi, Ryouta Takahashi, Kousuke Hiromori, Naomi Shibasaki-Kitakawa

    AOCS Annual Meeting & Expo 2022 2022/05/04

  12. Process design for efficient production from glycerol into high-value chemicals International-presentation Invited

    Tsutomu Chida, Aritomo Yamaguchi, Atsushi Takahashi, Kousuke Hiromori, Naoki Mimura, Naomi Shibasaki-Kitakawa

    AOCS Annual Meeting & Expo 2022 2022/05/02

  13. 反応場・反応系の制御によるプロセスの設計 Invited

    廣森浩祐

    第22回反好会講演会 2022/03/15

  14. 吸着を利用したナノ粒子分散液の分離精製法の開発 Invited

    北川尚美, 廣森浩祐, 高橋厚

    化学工学会第52回秋季大会 2021/09/22

  15. Kinetic Model for Process Design of Efficient Production of High Value-chemicals from Glycerol International-presentation Invited

    Tsutomu Chida, Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Naoki Mimura, Aritomo Yamaguchi, Atsushi Takahashi

    AOCS Annual Meeting & Expo 2021 2021/05/06

  16. Green Process for Selective Ester Production Using HeterogeneousResin Catalyst with Different Reaction Field International-presentation Invited

    Kousuke Hiromori, Kazuki Murakami, Atsushi Takahashi, Naomi Shibasaki-Kitakawa

    AOCS Annual Meeting & Expo 2021 2021/05/05

  17. Multiple Production Process of Foods and Cosmetics Raw Materials from Waste Oil in Rice Bran Oil Refinery International-presentation Invited

    Shibasaki-Kitakawa N, Hiromori K, Kato M

    2020 TwIChE 2020/10/24

  18. イノベーションを起こす技術者育成における工学教育の役割 Invited

    廣森浩祐

    化学工学会第51回秋季大会 2020/09/25

  19. イオン交換樹脂による吸着を利用した分離精製プロセスの設計法 Invited

    廣森浩祐

    第28回東北支部若手の会セミナー 2020/08/11

  20. A novel system for biodiesel production from waste cooking oil using ionexchange resin catalyst: Case of introduction to a remote island in Japan International-presentation Invited

    K. Hiromori, M. Kato, Y. Fukushima, N. S.-Kitakawa

    IMPRES2019 2019/10/22

  21. 食品とエネルギーの製造を融合した多成分同時製造技術の開発 Invited

    廣森浩祐, 北川尚美

    化学工学会第84年会 2019/03/15

  22. Simultaneous production of biofuel and natural bioactive compounds from non-edible by-products during vegetable oil refining International-presentation Invited

    K.Hiromori, N.Shibasaki-Kitakawa

    innoFSPEC 2018/06/15

  23. Novel Application of Microporous Type Ion-exchange Resin International-presentation Invited

    K.Hiromori, N.Shibasaki-Kitakawa

    International Powder and Nanotechnology Forum 2018 2018/06/12

  24. Novel Synthesis Method of Ferulic Acid Esters with Various Pharmaceutical Activities International-presentation Invited

    K.Hiromori, Y.Miwa, N.Shibasaki-Kitakawa

    The 4th International Conference on Rice Bran Oil (ICRBO 2017) 2017/08/24

  25. Simultaneous production of high quality biodiesel and vitamin E from deodorizer distillate obtained during edible oil refining. International-presentation Invited

    2017/07/26

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Industrial Property Rights 25

  1. 多価アルコールエステル化合物の製造方法

    北川 尚美, 廣森 浩祐, 村上 和希, 渡邉 智也

    特許7405433

    Property Type: Patent

  2. 维生素E类的制备方法及维生素E类制备装置

    北川 尚美, 廣森 浩祐, 細川 明佳, 渡邉 智也

    ZL201880011511.X

    Property Type: Patent

  3. PRODUCTION METHOD FOR POLYVALENT ALCOHOL ESTER COMPOUNDS

    Naomi Shibasaki-Kitakawa, Kousuke Hiromori, Kazuki Murakami, Tomoya Watanabe

    US11691940B2

    Property Type: Patent

  4. Production method for polyvalent alcohol ester compounds

    Naomi Shibasaki-Kitakawa, Kousuke Hiromori, Kazuki Murakami, Tomoya Watanabe

    GB2591346B

    Property Type: Patent

    Holder: 東北大学

  5. ケイ皮酸エステル化合物の製造方法

    北川尚美, 廣森浩祐, 三輪祐典

    特許第7197172号

    Property Type: Patent

    Holder: 東北大学

  6. METODE PRODUKSI VITAMIN E DAN ALAT PRODUKSI VITAMIN E

    Naomi SHIBASAKI-KITAKAWA, Kousuke HIROMORI, Sayaka Hosokawa, Tomoya Watanabe

    IDP000083257

    Property Type: Patent

    Holder: PHYTOCHEM PRODUCTS INC.

  7. 植物由来の固形パラフィンの製造方法および植物由来の固形パラフィン

    廣森浩祐, 北川尚美, 加藤牧子, 大柳友克

    特許第7125695号

    Property Type: Patent

  8. ビタミンE類の製造方法およびビタミンE類製造装置

    北川 尚美, 廣森 浩祐, 細川 明佳, 渡邉 智也

    特許第7106075号

    Property Type: Patent

  9. METHOD FOR PRODUCING CINNAMIC ACID ESTER COMPOUND

    Naomi SHIBASAKI-KITAKAWA, Kousuke HIROMORI, Yusuke Miwa

    US11021431B2

    Property Type: Patent

    Holder:

  10. VITAMIN E PRODUCTONMETHOD AND VITAMIN E PRODUCTION DEVICE

    Naomi SHIBASAKI-KITAKAWA, Kousuke HIROMORI, Sayaka Hosokawa, Tomoya Watanabe

    US11014903B2

    Property Type: Patent

    Holder: PHYTOCHEM PRODUCTS INC.

  11. A METHOD FOR THE PRODUCTION OF VITAMIN E WITH A HIGH PURITY, VITAMIN E PRODUCED BY SAID METHOD, AND A COMPOSITION COMPRIGING SAID VITAMIN E

    N. Shibasaki-Kitakawa, K. Hiromori, K. Kanuma, T. Sasayama

    US9963438B2

    Property Type: Patent

  12. 二酸化炭素の供給転換剤および二酸化炭素の利用方法

    吉岡敏明, 亀田知人, 冨重圭一, 福島康裕, 藪下瑞帆, 廣森浩祐, 鈴木佑京

    Property Type: Patent

  13. アルカリ金属/アルカリ土類金属水酸化物の製造方法、及び、当該製造方法のカルボン酸塩廃棄物再資源化技術への応用

    廣森浩祐, 北川尚美, 片上佳祐

    Property Type: Patent

  14. 脂肪族グリコシド化合物又は糖脂肪酸エステル化合物の製造方法

    廣森浩祐, 前田直樹, 笹山知嶺, 北川尚美

    Property Type: Patent

  15. Method for producing alkali metal/alkaline earth metal hydroxide and application of said production method to carboxylate waste recycling technology

    Kousuke Hiromori, Keisuke Katagami, Naomi Shibasaki-Kitakawa

    Property Type: Patent

  16. バイオマスの微粒化方法

    祖山均, 北川尚美, 廣森浩祐, 久慈千栄子

    Property Type: Patent

  17. 脂肪族グリコシド化合物又は糖脂肪酸エステル化合物の製造方法

    廣森浩祐, 前田直樹, 笹山知嶺, 北川尚美

    Property Type: Patent

  18. Method for producing plant-derived solid paraffin and plant-derived solid paraffin

    Kousuke Hiromori, Naomi Shibasaki-Kitakawa, Makiko Kato, Tomokatsu Oyanagi

    Property Type: Patent

  19. 酸化抑制剤、酸化抑制作用増強剤、酸化抑制方法、及び酸化抑制作用の増強方法

    高橋厚, 香取卓, 廣森浩祐, 北川尚美

    Property Type: Patent

  20. 脂肪族エステルの製造方法及び脂肪族エステルの製造装置

    廣森浩祐, 北川尚美, 加藤牧子, 南一郎, 丹羽忠夫

    Property Type: Patent

  21. Method for producing aliphatic glycoside compound or sugar fatty acid ester compound

    Kousuke Hiromori, Naoki Maeda, Tomone Sasayama, Naomi Shibasaki-Kitakawa

    Property Type: Patent

  22. 潜熱蓄熱材組成物、及び潜熱蓄熱特性制御方法

    廣森 浩祐, 北川 尚美, 重原 武浩

    Property Type: Patent

  23. ビタミンE類の選択的な分離方法

    北川 尚美, 廣森 浩祐, 鹿沼 光誠, 笹山 知嶺

    特許6548087号

    Property Type: Patent

  24. 油からのビタミンE類の選択的な連続回収方法

    北川 尚美, 米本 年邦, 廣森 浩祐

    特許第6256981号

    Property Type: Patent

  25. VITAMIN E PRODUCTONMETHOD AND VITAMIN E PRODUCTION DEVICE

    Naomi SHIBASAKI-KITAKAWA, Kousuke HIROMORI, Sayaka Hosokawa, Tomoya Watanabe

    MY-194958

    Property Type: Patent

    Holder: PHYTOCHEM PRODUCTS INC.

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Research Projects 8

  1. 植物油工場で大量発生する油滓を再資源化可能なエネルギー自立型プロセスの開発

    廣森浩祐

    Offer Organization: 環境再生保全機構

    System: 環境研究総合推進費【問題対応型】

    2024/04 - 2027/03

  2. 反応平衡制約からの解放を実現する触媒粒子内の反応分離機能制御

    北川 尚美, 廣森 浩祐

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業 基盤研究(A)

    Category: 基盤研究(A)

    Institution: 東北大学

    2023/04 - 2026/03

  3. Establishment of a method for introducing new resource recycling technologies for a sustainable palm industry

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research Fund for the Promotion of Joint International Research (Fostering Joint International Research (B))

    Category: Fund for the Promotion of Joint International Research (Fostering Joint International Research (B))

    Institution: Tohoku University

    2022/10 - 2025/03

  4. 省エネルギー型の多成分分離を達成する多分子層吸着理論の構築

    廣森浩祐

    Offer Organization: 日本学術振興会

    System: 若手研究

    2022/04 - 2025/03

  5. 油脂産業で大量発生するフーツの完全循環 を目指すコルベ電解システムの開発

    廣森浩祐

    Offer Organization: 環境再生保全機構

    System: 環境研究総合推進費【問題対応型・革新型】

    2021/04 - 2024/03

  6. バイオ潤滑油利用の普及に向けた長寿命化に関する研究

    廣森浩祐

    Offer Organization: サイエンスクリエイト

    System: 豊橋市未来産業創出事業 共同研究支援事業

    2023/07 - 2024/02

  7. 地域環境に適した保持温度を持つバイオマス由来潜熱蓄熱材の設計法の確立 Competitive

    北川 尚美, 廣森 浩祐

    Offer Organization: 日本学術振興会(JSPS)

    System: 基盤研究(A)

    2019/04 - 2022/03

  8. 高品質バイオディーゼル燃料のためのハイブリッド型製造装置の開発

    Offer Organization: 宮城県

    System: みやぎ産業廃棄物3R等推進事業費補助金

    2020/08 - 2022/02

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