Statistical Method of Deducting Activation Energies for the Steam Methane Reforming Reactions

Author(s):  
M. N. Nikitin ◽  
D. Pashchenko

In this paper, a method of deducting activation energies for heterogeneous reactions of steam methane reforming is presented. The essence of the method lies in iterative evaluation of kinetic parameters, namely activation energies of reactions, for a given reactor. The novelty of the method lies in utilizing a statistical approach to reduce computational effort of numerical simulation. The method produces multivariable correlations between activation energies and operational parameters of the process: pressure, temperature, steam-to-methane ratio, residence time, and catalyst properties. These correlations can be used for numerical simulations of steam methane reforming to yield methane conversion rate, spatial and temporal distribution of reaction products, temperature and pressure within the reactor. An average computational effort is equal to a batch of 18 ([Formula: see text]) simulations for [Formula: see text] variables. The method was demonstrated by evaluating two-variable correlations of activation energies with pressure and temperature. The developed numerical model was validated against adopted experimental data.

2021 ◽  
Vol 2064 (1) ◽  
pp. 012093
Author(s):  
I E Filatov ◽  
D L Kuznetsov ◽  
V V Uvarin

Abstract The paper represents the results of the experimental study of steam methane reforming under the action of spark discharge on water surface. Values of conversion rate and output of reaction products at methane pressures of 1 to 5 atm were obtained, and specific energy consumption of reforming process was determined. Pulse generator with a voltage amplitude up to 200 kV and a pulse duration of 15 ns was used to power the discharge. Although an increase in pressure decreases both the methane conversion rate and the energy deposition into the gas mixture, the conversion efficiency and specific energy consumption remain the same. The obtained minimum value of specific energy consumption for steam methane reforming amounted to 10 eV/molecule.


2017 ◽  
Vol 60 (3) ◽  
pp. 137-145 ◽  
Author(s):  
Fumihiro Watanabe ◽  
Ikuko Kaburaki ◽  
Naohiro Shimoda ◽  
Akira Igarashi ◽  
Shigeo Satokawa

2022 ◽  
Vol 428 ◽  
pp. 131492
Author(s):  
Valeria Tacchino ◽  
Paola Costamagna ◽  
Silvia Rosellini ◽  
Valter Mantelli ◽  
Alberto Servida

2012 ◽  
Vol 207-208 ◽  
pp. 142-150 ◽  
Author(s):  
Miaomiao Xie ◽  
Zhiming Zhou ◽  
Yang Qi ◽  
Zhenmin Cheng ◽  
Weikang Yuan

2021 ◽  
Vol 51 ◽  
pp. 101634
Author(s):  
Dyovani Bruno Lima Santos ◽  
Ana Caroline Pereira Oliveira ◽  
Carla Eponina Hori

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