In-situ DRIFTs analysis
In-situ DRIFTs is relatively simply than other advanced in-situ reactions and is commonly used to understand reaction intermediates. The following procedure was reported by Hu
In-situ DRIFTs is relatively simply than other advanced in-situ reactions and is commonly used to understand reaction intermediates. The following procedure was reported by Hu
Nano-CaO or CaCO3 is supposed to have high capacity of CO2 capture, better stability and also high reaction speed. This is mainly due to the
The conversion of CO2 and methane is important indicators of the performance of ICCU-DRM, in addition to the selectivity to H2 and CO. The follow
DOI: 10.1126/sciadv.aav5077 “In situ XRD experiments were performed in a Bruker D8 Advance x-ray diffractometer to compare the process decarbonation kinetics of CaL reforming of
Fixed-bed reaction systems are normally used for ICCU-DRM. Although TGA can also be used to demonstrate the stability of DFMs. However, the feeding gas composition
Temperature-programmed surface reactions (TPSR) can be used to understand reactions within ICCU-DRM. The following methods were reported by Tian et al. (DOI: 10.1126/sciadv.aav507): “TPSRs were
Fe-based catalysts have strong oxygen carrier abilities and have been used for ICCU-DRM. The catalysts were mixed with CaO for ICCU-DRM research. The method of
Ni-MgO-Al2O3 catalysts were developed for ICCU-DRM. Ni is active for dry reforming methane, and MgO and Al2O3 are common supports. The methods are reported by
Dual functional materials can be prepared by 1) physically mixing sorbent and catalyst; 2) impregnating catalyst on sorbent; 3) one-pot synthesis of DFMs mixing catalytic and
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