The thermochemical sulfur-iodine cycle is a potential method for hydrogen production, and the hydrogen iodide (HI) decomposition is the key step to determine the efficiency of hydrogen production in the cycle. The applications of FTT include the researches of optimal performances and optimal configurations for various thermodynamic processes, devices and cycles. studied the steam methane reforming reactor with hydrogen PRM as the zation goal, and obtained the optimal wall temperature distribution and inlet p Finite-time thermodynamics (FTT) has made significant progress in physics and engineering fields since the mid-1970 s, and the aim is to reduce the irreversibility of systems under finite time and size constraints. ![]() ![]() also investigated t tion of carbon dioxide and hydrogen to synthesize olefins, and analyzed the effe actor structural parameters on specific EGRs the specific EGR could be reduced by and 24.78% under the optimal catalyst bed density and pipe diameter, respective al.
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