1 |
Hydrogen Production through Ethanol Steam Reforming on Conducting Heating Alumite Catalysts Nguyen HTK, Guo Y, Kawachi H, Sakurai M, Kameyama H Journal of Chemical Engineering of Japan, 44(10), 809, 2011 |
2 |
Fundamental Study on 2-propanol Dehydrogenation under Forced Periodic Temperature Cycling Sakurai M, Kato T, Kameyama H KAGAKU KOGAKU RONBUNSHU, 37(2), 120, 2011 |
3 |
Numerical investigations on the development of plate reformers: Comparison of different assignments of the chambers Zhang Q, Zhu XD, Kameyama H AIChE Journal, 54(10), 2707, 2008 |
4 |
Study on the Electro-Deposition of Platinum on Anodic Alumite Films for Catalytic Combustion of VOCs Wang LF, Zhang Q, Sakurai M, Kameyama H Journal of Chemical Engineering of Japan, 41(4), 272, 2008 |
5 |
Catalytic oxidation of dichloromethane and toluene over platinum alumite catalyst Wang LF, Sakurai M, Kameyama H Journal of Hazardous Materials, 154(1-3), 390, 2008 |
6 |
Simulation and experimental analysis on the development of a co-axial cylindrical methane steam reformer using an electrically heated alumite catalyst Zhang Q, Nakaya M, Ootani T, Takahashi H, Sakuraia M, Kameyama H International Journal of Hydrogen Energy, 32(16), 3870, 2007 |
7 |
Development of a methane steam reformer using an electrically heated alumite catalyst: Start-up performance investigated by the numerical and experimental analysis Zhang Q, Guo Y, Zhou L, Sakurai M, Kameyama H Journal of Chemical Engineering of Japan, 40(6), 487, 2007 |
8 |
Performance simulations of a compact plate methane steam reformer using an electrically heated alumite catalyst Zhang Q, Sakurai M, Kameyama H Journal of Chemical Engineering of Japan, 40(4), 319, 2007 |
9 |
Selective catalytic reduction of nitric oxide with propene and diesel fuel as reducing agents over anodic alumina catalyst Guo Y, Wang LF, Sakurai M, Kameyama H, Kudoh Y Journal of Chemical Engineering of Japan, 39(2), 162, 2006 |
10 |
Hydrogen production from ethanol using a plasma reactor with an alumite catalyst electrode Iwasaki Y, Liu JQ, Zhang J, Kitajima T, Sakurai M, Kameyama H Journal of Chemical Engineering of Japan, 39(2), 216, 2006 |