Carbon dioxide emissions, capture, storage and utilization: Review of materials, processes and technologies

TM Gür - Progress in Energy and Combustion Science, 2022 - Elsevier
Carbon capture and storage (CCS) is an essential component of mitigating climate change,
which arguably presents an existential challenge to our planet. Although CO 2 emissions …

Catalysis of alloys: classification, principles, and design for a variety of materials and reactions

Y Nakaya, S Furukawa - Chemical Reviews, 2022 - ACS Publications
Alloying has long been used as a promising methodology to improve the catalytic
performance of metallic materials. In recent years, the field of alloy catalysis has made …

A comprehensive review of green hydrogen energy systems

F Kourougianni, A Arsalis, AV Olympios, G Yiasoumas… - Renewable Energy, 2024 - Elsevier
The global energy sector is currently undergoing a fundamental transformation as it shifts
away from fossil fuels towards renewable energy sources. Green hydrogen is one of the …

Electrochemistry and energy conversion features of protonic ceramic cells with mixed ionic-electronic electrolytes

I Zvonareva, XZ Fu, D Medvedev, Z Shao - Energy & Environmental …, 2022 - pubs.rsc.org
Protonic ceramic electrochemical cells (including fuel cells (PCFCs) and electrolysis cells
(PCECs)) are positioned as an eco-friendly means for realizing energy/chemical conversion …

Transformation technologies for CO2 utilisation: Current status, challenges and future prospects

ADN Kamkeng, M Wang, J Hu, W Du, F Qian - Chemical Engineering …, 2021 - Elsevier
To prevent global warming and climate change caused by CO 2 emissions, the
Intergovernmental Panel on Climate Change (IPCC) recommends lowering CO 2 emissions …

Recent trends in developments of active metals and heterogenous materials for catalytic CO2 hydrogenation to renewable methane: A review

WK Fan, M Tahir - Journal of environmental chemical engineering, 2021 - Elsevier
Carbon dioxide is a greenhouse gas that is abundantly found in the atmosphere. Therefore,
by utilizing carbon dioxide to produce methane would not only reduce the concentration of …

Understanding the complexity in bridging thermal and electrocatalytic methanation of CO 2

H Kang, J Ma, S Perathoner, W Chu, G Centi… - Chemical Society …, 2023 - pubs.rsc.org
The selective methanation of CO2 is an important research area to meet the net-zero
emission targets. Furthermore, it is crucial to develop solutions to achieve carbon neutrality …

[HTML][HTML] Advancements in CO2 methanation: A comprehensive review of catalysis, reactor design and process optimization

M Tommasi, SN Degerli, G Ramis, I Rossetti - … Engineering Research and …, 2024 - Elsevier
Renewable electricity, production/storage and distribution of green hydrogen and carbon
dioxide emission reduction are just three of the practices needed for a net zero-emission …

Reduction of CO2 to chemicals and Fuels: Thermocatalysis versus electrocatalysis

J Gao, SCS Shiong, Y Liu - Chemical Engineering Journal, 2023 - Elsevier
Reducing carbon dioxide to valuable chemicals and fuels such as formic acid, carbon
monoxide, methanol, methane, ethylene, ethanol, and multi-carbon (C2+) products by …

Techno-economic analysis on CO2 mitigation by integrated carbon capture and methanation

Z Lv, H Du, S Xu, T Deng, J Ruan, C Qin - Applied Energy, 2024 - Elsevier
Carbon capture and utilization (CCU) by methanation combines CO 2 capture and Power-to-
Gas (PtG) routes, and could simultaneously realize excess clean energy storage and …