It is generally accepted that carbon dioxide (CO 2) is one of the most important greenhouse gases and a primary factor in the acceleration of climate change. Methanation, which …
The structure sensitivity of CO 2 methanation was explored over nickel particles (10–25 nm) supported on CeO 2 nanorods. An optimum Ni particle size of 20 nm was revealed, with the …
Understanding the viability of the RWGS from a thermodynamic and techno-economic angle opens new horizons within CO 2 conversion technologies. Unfortunately, profitability studies …
Y Xu, H Wan, X Du, B Yao, S Wei, Y Chen… - Fuel Processing …, 2022 - Elsevier
CO 2 methanation is of great significance to CO 2 utilization. However, it is challenging to prepare Ni-based catalysts with superior low-temperature activity via a simple method. In …
The effect of ceria morphology, nanorods-NR and nanopolyhedra-NP on important kinetic parameters of the dry reforming of methane (DRM) over Ni/nano-ceria (d Ni∼ 20 nm) was …
The rational design and fabrication of highly-active and cost-efficient catalytic materials constitutes the main research pillar in catalysis field. In this context, the fine-tuning of size …
Ceria-based oxides have been extensively involved in a wide range of catalytic applications due to their intriguing properties, related mostly to their superior redox features in …
J Ma, Q Jiang, S Li, W Chu, H Qian… - Chemical Engineering …, 2024 - Elsevier
CO 2 methanation is a key step in the power-to-gas technology for storing and distributing renewable energy as energy vectors. Due to thermodynamic constraints, highly active …
X Gao, P Cai, Z Wang, X Lv, S Kawi - Topics in Catalysis, 2023 - Springer
CO2 utilizations and conversions contribute to the reduction of greenhouse gas emissions and regeneration of industrial exhausts. Reforming and hydrogenation processes can …