Integrated CO 2 capture and utilization: a review of the synergistic effects of dual function materials

Y Zhang, S Zhao, L Li, J Feng, K Li, Z Huang… - Catalysis Science & …, 2024 - pubs.rsc.org
Recent years have witnessed rapid advancements in carbon capture, storage, and
utilization (CCUS) technologies, which are key to reducing greenhouse gas emissions and …

Design dual confinement Ni@ S-1@ SiO2 catalyst with enhanced carbon resistance for methane dry reforming

M Li, W Liu, Y Mao, K Liu, L Zhang, Z Cao, Q Ma… - International Journal of …, 2024 - Elsevier
Methane dry reforming is a key method for converting greenhouse gases into valuable
syngas, providing a pathway for the sustainable production of valuable compounds. Yet the …

Influence of Ag on the microstructure, mechanical and tribological properties of SiC–Ag composite film deposited by the industrial DC magnetron sputtering system

H Ju, F Kong, J Xu, Y Geng, C Zhang, J Luan - Vacuum, 2023 - Elsevier
Industrial synthesis and application of green self-lubricant hard film have been considering
as a hot spot in the field of surface engineering. In this paper, the Ag was added into the …

Light-driven thermocatalytic CO2 reduction by CH4 on alumina-cluster-modified Ni nanoparticles with excellent durability and high light-to-fuel efficiency promoted by …

Q Hu, Y Li, H Cao, L Ji, J Wu, M Zhong - Journal of Colloid and Interface …, 2024 - Elsevier
Using inexhaustible solar energy to drive efficient light-driven thermocatalytic CO 2
reduction by CH 4 (DRM) is an attractive approach that can synchronously reduce the …

Synergetic effect for highly efficient light-driven CO2 reduction by CH4 on Co/Mg-CoAl2O4 promoted by a photoactivation

Z Cui, Q Hu, Y Li, J Wu, X Yu, H Cao, L Ji… - Applied Catalysis B …, 2024 - Elsevier
The utilization of photothermocatalytic dry reforming of methane is shown to be an up-and-
coming technology. However, reaching high fuel productivity at a comparatively low light …

Lamellar cross-linking Ni/CeO2 as an efficient and durable catalyst for dry reforming of methane

H Xia, C Dang, D Zhou, W Cai - Chemical Engineering Journal, 2024 - Elsevier
Dry reforming of methane provides a prospective process for converting greenhouse gases
into syngas but suffers from the coking and sintering of catalyst at high operating …

Utilization of coal gasification fine slag-derived mesoporous silica supports for enhanced dry reforming of methane catalysts

T Li, J Liu, Y Zhang, X Zhang, Y Wang, Y Zhao, G Li… - Fuel, 2024 - Elsevier
Utilizing industrial waste coal gasification fine slag (CGFS) for the preparation of dry
reforming of methane (DRM) catalyst supports presents an innovative approach to waste …

Built-in electric field in NiO-CuO heterostructures to regulate the hydroxide adsorption sites for 5-hydroxymethylfurfural electrooxidation assisted hydrogen production

Y Zhu, J Wei, J Wu, R Chen, P Tsiakaras… - Journal of Colloid and …, 2024 - Elsevier
The development of catalysts with suitable adsorption behavior for the reaction molecules
and the elucidation of their internal structure-adsorption-catalytic activity relationships are …

Enhanced CO2 conversion with CH4 for greenfuel generation using coke-neutral nickel-loaded fibrous silica titania catalysts

M Alhassan, AA Jalil, AHK Owgi, MB Bahari… - Process Safety and …, 2024 - Elsevier
This study reveals a groundbreaking advancement in utilizing carbon dioxide (CO 2) for
syngas production through methane (CH 4) dry reforming using Fibrous Silica Titania (FST) …

[HTML][HTML] The mitigation of carbon deposition for Ni-based catalyst in CO2 reforming of methane: A combined experimental and DFT study

L Wang, Z Dai, L Yao, L Yang, W Jiang - Carbon Capture Science & …, 2024 - Elsevier
The dry reforming of CH 4 (DRM) reaction can simultaneously convert two greenhouse
gases CO 2 and CH 4 into high valued syngas. Nickel-based catalysts have been widely …