@inproceedings{scholars14751, note = {cited By 5; Conference of 2021 International Conference on Process Engineering and Advanced Materials, ICPEAM2020 ; Conference Date: 13 July 2021 Through 15 July 2021; Conference Code:185461}, volume = {287}, year = {2021}, doi = {10.1051/e3sconf/202128704015}, journal = {E3S Web of Conferences}, publisher = {EDP Sciences}, title = {Effects of operating parameters for dry reforming of methane: A short review}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-85127139845&doi=10.1051\%2fe3sconf\%2f202128704015&partnerID=40&md5=58ef447d5b6567cad1c9c08f935804e6}, abstract = {Dry reforming of methane (DRM) which also known as CO2 reforming of methane is a well-investigated reaction to serve as an alternative technique to attenuate the abundance of greenhouse gases (CO2 and CH4). The syngas yielded is the main component for the liquid fuels and chemicals production in parallel with the fluctuating price of oil. Major researches were executed to seek for the well-suited catalysts before the commercialization of DRM can be realized. However, severe deactivation due to the carbon formation restricted the usage of promising Ni-based catalysts for DRM. Meanwhile, the deactivation on these catalysts can be associated with the operating conditions of DRM, which subsequently promoted the secondary reactions at different operating conditions. In fact, the parametric study could provide a benchmark for better understanding of the fundamental steps embodied in the CH4 and CO2 activation as well as their conversions. This review explores on the influences of the reaction operating parameters in term of the reaction temperatures, reactant partial pressures, feed ratios, and weight hourly space velocity (WHSV) on catalytic performance and carbon accumulation for the DRM. {\^A}{\copyright} The Authors, published by EDP Sciences. This is an open access article distributed under the terms of the Creative Commons Attribution License 4.0 (http://creativecommons.org/licenses/by/4.0/)}, issn = {25550403}, author = {Ayoub, M. and Chong, C. C. and Zamir, A. and Cheng, Y. W. and Farrukh, S. and Naqvi, S. R. and Setiabudi, H. D. and Riaz, N. and Ramzan, N.} }