Momose Takeshi (The Univ. of Tokyo), Horie Takafumi (Osaka Metropolitan Univ.), Nakagawa Keizo (Kobe Univ.), Watanabe Ryo (Shizuoka Univ.), Matsune Hideki (Miyazaki Univ.), Taniya Keita (Kobe Univ.), Muranaka Yosuke (Kyoto Univ.), Fujitsuka Hiroyasu (Kyoto Univ.), Hirota Yuichiro (Nagoya Inst. of Tech.), Goshima Takashi (Kagoshima Univ.), Asano Shusaku (Kyushu Univ.), Fujiwara Kakeru (Yamagata Univ.), Hiromori Kousuke (Tohoku Univ.) |
The field of chemical reaction engineering has in common process engineering, the manipulation of chemical reactions, and a variety of technologies are used and studied that are not found in other fields. In order to bring sustainable development to the next generation of chemical engineering, it is necessary to create synergy with these new technologies. In this international symposium, young researchers from Japan and other Asian countries will discuss the future of chemical reaction engineering from the viewpoints of their respective research fields, with "sustainable technology" as the keyword.
Most recent update: 2023-05-09 13:29:01
The keywords that frequently used in this topics code. | Keywords | Number | |
---|---|---|---|
membrane reactor | 1 | ||
Yttria-stabilized Zirconia | 1 | ||
Density functional theory | 1 | ||
Flow chemistry | 1 | ||
Cavitation | 1 | ||
Sustainable process | 1 | ||
zeolite | 1 | ||
degradation | 1 | ||
Sonochemistry | 1 | ||
functional thin film fabrication technology | 1 | ||
Catalytic process | 1 | ||
Strontium Titanate | 1 | ||
MIL-88B(Fe) | 1 | ||
Exsolution | 1 | ||
mist CVD | 1 | ||
Ultrasound | 1 | ||
Cesium Hydrogen Phosphate | 1 | ||
Metal oxide catalyst | 1 | ||
Photocatalytic membrane reactor | 1 | ||
CO2 | 1 | ||
growth mechanism | 1 |
ACKN No. | Title/Author(s) | Keywords | Style |
---|---|---|---|
215 | [Invited lecture] CO2 hydrogenation membrane reactor with zeolite membrane | membrane reactor CO2 zeolite | O |
251 | [Invited lecture] In-situ growth of MIL-88B(Fe,Co) for photocatalytic membrane reactor with high permeance flux and phenol removal efficiency | MIL-88B(Fe) Photocatalytic membrane reactor degradation | O |
255 | [Invited lecture] Oxidative Conversion of Methane and Ethane in Solid-state Electrolysis Cells | Cesium Hydrogen Phosphate Yttria-stabilized Zirconia Strontium Titanate | O |
268 | [Invited lecture] Sonochemistry and Environmental Engineering Applications | Ultrasound Cavitation Sonochemistry | O |
462 | [Invited lecture] Continuous-flow setups for sustainable biocatalytic and photocatalytic processes | Flow chemistry Sustainable process Catalytic process | O |
703 | [Invited lecture] Reaction mechanism of mist CVD | mist CVD functional thin film fabrication technology growth mechanism | O |
743 | [The SCEJ Award for Outstanding Asian Researcher and Engineer] Rational Design of Catalytic and Energy Materials: from Computation Modeling to Experimental Validation | Exsolution Metal oxide catalyst Density functional theory | O |