PROMOTOR TABIATI VA UNING 20% CO–20% FE–5% B/AL₂O₃ KATALIZATORI-NING CO + H₂ DAN UGLEVODORODLAR SINTEZIDAGI FAOLLIGIGA TA’SIRI
Том 4 № 57 (2026) 22-24
Аннотация
Библиографические ссылки
S. Mehariya, A.K. Patel, P.K. Obulisamy, E. Punniyakotti, J.W.C. Wong, Codigestion of food waste and sewage sludge for methane production: current status and perspective, Bioresour. Technol. 265 (2018) P. 519-531.
O. Parthiba Karthikeyan, E. Trably, S. Mehariya, N. Bernet, J.W.C. Wong, H. Carrere, Pretreatment of food waste for methane and hydrogen recovery: a review, Bioresour. Technol. 249 (2018) P. 1025-1039.
A.S. Snehesh, H.S. Mukunda, S. Mahapatra, S. Dasappa, FischerTropsch route for the conversion of biomass to liquid fuels—technical and economic analysis, Energy 130 (2017) P. 182-191.
W. Chen, T. Lin, Y. Dai, Y. An, F. Yu, L. Zhong, et al., Recent advances in the investigation of nanoeffects of Fischer-Tropsch catalysts, Catal. Today 311 (2018) 822.
N. Moazami, M.L. Wyszynski, K. Rahbar, A. Tsolakis, Parametric study and multiobjective optimization of fixed-bed FischerTropsch (FT) reactor: the improvement of FT synthesis product formation and synthetic conversion, Ind. Eng. Chem. Res. 56 (2017) 94469466.
M. Rafati, L. Wang, D.C. Dayton, K. Schimmel, V. Kabadi, A. Shahbazi, Technoeconomic analysis of production of Fischer-Tropsch liquids via biomass gasification: the effects of Fischer-Tropsch catalysts and natural gas co-feeding, Energy Convers. Manage. 133 (2017) 153166.
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