Adsorption-based CO₂ Capture Processes
カーボンリサイクルの実現には不可欠であるCO₂分離・回収技術を対象としたプロセス研究を行っています。
吸着分離技術を中心に、分離性能評価に基づく、分離プロセスの操作条件検討や耐久性評価などを実施しています。
Our research focuses on CO₂ separation and capture processes including a direct air capture (DAC), which play a crucial role in enabling carbon recycling.
With a particular focus on adsorption-based separation using MOFs and amine-functionalized materials, we investigate operating conditions of separation processes based on performance evaluation, as well as their durability and long-term stability.
Process Design, Analysis, and Simulation
分離およびエネルギープロセスを対象として、
物質・熱移動モデルや数値解析に基づくプロセス設計・評価を行っています。
Process design and performance evaluation are conducted using modeling and simulation.
Mass and heat transfer phenomena are analyzed.
Development of Functional Porous Materials
分離・エネルギー利用プロセスへの応用を目的として、
機能性多孔質材料の開発・評価・成形に関する研究を行っています。
The development of functional porous materials, including zeolites, porous carbons, and silicas, has been studied for separation and waste-heat recovery applications.
Enhancement of Adsorption Performance by External Stimuli
吸着プロセスにおける性能向上を目的として、音場などの外力が吸着挙動や物質移動特性に及ぼす影響について研究しています。
動的挙動の制御を通じて、従来プロセスでは達成が困難であった高効率化や高応答性の実現を目指しています。
To enhance the performance of adsorption processes, we investigate the effects of external stimuli, such as acoustic fields, on adsorption behavior and mass transfer characteristics.
By controlling dynamic adsorption phenomena, such as heat and mass transfer, we aim to achieve higher efficiency and faster process response than those attainable with conventional processes.