In-situ DRFTs analysis of ICCU-RWGS using Pt-Na/Al2O3
Dual functional materials, including Pt as the catalytic sites and Na as the sorbent sites, were used for ICCU-RWGS. Al2O3 was used as the support
Dual functional materials, including Pt as the catalytic sites and Na as the sorbent sites, were used for ICCU-RWGS. Al2O3 was used as the support
https://doi.org/10.1016/j.apcatb.2018.11.040 “To date, two main reaction mechanisms have been proposed: a redox process (Scheme 1) [[68], [69], [70]] and an associative “formate” mechanism (Scheme 2) [[71], [72], [73]]. Scheme
https://doi.org/10.1016/j.ccst.2021.100001 “We further investigated the influence of regeneration temperature on the performance of CaO. After 50 cycles of ICCU, the regeneration of CaO at 850
https://doi.org/10.1016/j.ccst.2021.100001 “By investigating the reaction mechanism using in-situ diffused reflectance infrared Fourier transform spectroscopy coupled with mass spectrum (DRIFTS-MS), we confirm the formation of calcium carbonate (CaCO3) during the CO2 adsorption (character
https://doi.org/10.1016/j.ccst.2021.100001 ” The formation of calcium carbonate (CaCO3) can be clearly observed from the in-situ DRIFTS after 30 mins CO2 adsorption and 8 mins purge.
The following sentences are copied from this reference (https://doi.org/10.1016/j.ccst.2022.100052) regarding the reaction pathways and intermediates for Ni-based ICCU-RWGS. “For the production of CO (RWGS), the
There is extensive research on carbon capture using adsorption. The reaction mechanism for CO2 capture could be complicated when catalytic sites (e.g. Ni) are involved.
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