200
F
Fan, L., 124
Fan, M., 124
Farahani, B.V., 122
Farlow, M.W., 94
Feaster, J.T., 101
Fegade, U., 93–104
Felix, S., 123
Flores-Flores, M., 127
Formaldehyde, 77, 80, 99, 113, 130, 132,
135–137, 140, 141, 161–180
Formic acid (HCOOH), 78, 80, 93–104, 115,
134, 136, 137, 140–142, 163, 164
Franco, T.T., 47
Freitas, A.C.D., 189
Froment, G.F., 130, 131
Fujimoto, K., 124
Fujishima, A., 172
Fujitani, T., 124
Fujiwara, H., 95
G
Garcia-Gonzalez, L., 29
GHGs, see Greenhouse gases (GHGs)
Global warming, 76, 94, 161
Glycerol dry reforming (GDR), 186
Goland, A.N., 135
Gonzalez-Sebastian, L., 103
Gordon, G.C., 27
Grabow, L.C., 132
Greenhouse gases (GHGs), 46, 54,
76, 77, 161
Guirardello, R., 189
Guo, Z.X., 171
H
Habisreutinger, S.N., 169, 170
Hansen, J., 94
Han, Z., 134
Harun, N., 193, 194
Haruta, M., 125
Hasunuma, T., 9
HCOOH, see Formic acid (HCOOH)
Heim, L.E., 178
Hellingwerf, K.J., 27
Heterogeneous catalysis, 118–133
Hirokawa, Y., 19, 28
Homogeneous catalysis, 133–143, 147
Hosoglu, M.I., 56
Hou, W., 173
Huff, C.A., 134, 138
Huš, M., 132
Hutchison, F., 26
Hutschka, F., 101
Hydrogenation, 82–84, 113–147, 163,
177–179
Hydrogen energy, 187
Hydrogen fuel, 94
I
Ideris, A., 186
Inoue, Y., 101
In vivo synthetic polymers,
6, 25–32
Ismail, M., 186–196
J
Jacob-Lopes5, E., 46–68
Jeong, Y., 122
Jethave, G., 93–104
Jung, D.H., 24, 25
K
Kaneko, T., 23
Kanno, M., 21
Keller, M.W., 12
Kelly, K.L., 173
Kim, J., 120
Kim, L., 132
Kinetic study, 120, 127–131
Klier, K., 131
Kobl, K., 128, 129
Kondo, A., 9
Kortlever, R., 99, 100
Kothandaraman, J., 141, 142
Kumar, S., 96
L
Lan, E.I., 9, 12
Lee, D.-K., 177
Lee, H.C., 189
Lee, J.H., 122
L’Hospital, V., 113–147
Li, C., 28
Li, H., 174
Li, J., 79
Li, X., 166, 167
Liu, Q., 104
Liu, Y.-M., 132
Lütte, S., 26
Index
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