Hydrogen production using ethylene glycol steam reforming in a micro-reformer: Experimental analysis, multivariate polynomial regression and genetic programming modeling approaches
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering,General Chemistry
Reference48 articles.
1. Fabrication, characterization, and application of palladium composite membrane on porous stainless steel substrate with NaY zeolite as an intermediate layer for hydrogen purification;Kiadehi;Int J Hydrogen Energy,2019
2. Lab-scale and pilot-scale two-stage gasification of biomass using active carbon for production of hydrogen-rich and low-tar producer gas;Jeong;Fuel Process Technol,2020
3. Effects of mechanical compression on the performance of Polymer Electrolyte Fuel Cells and analysis through in-situ characterisation techniques-A review;Bouziane;J Power Sources,2019
4. Preparation of Pd/SAPO-34/PSS composite membranes for hydrogen separation: effect of crystallization time on the zeolite growth on PSS support;Kiadehi;J Ind Eng Chem,2020
5. Simulating and optimizing hydrogen production by low-pressure autothermal reforming of natural gas using non-dominated sorting genetic algorithm-II;Azarhoosh;Chem Biochem Eng Q,2015
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