Net-zero emissions chemical industry in a world of limited resources

P Gabrielli, L Rosa, M Gazzani, R Meys, A Bardow… - One Earth, 2023 - cell.com
The chemical industry is responsible for about 5% of global CO 2 emissions and is key to
achieving net-zero targets. Decarbonizing this industry, nevertheless, faces particular …

Technological solutions for boosting hydrogen role in decarbonization strategies and net-zero goals of world ship**: Challenges and perspectives

AT Hoang, A Pandey, FJM De Osés, WH Chen… - … and Sustainable Energy …, 2023 - Elsevier
Facing the problems concerning greenhouse gas (GHG) emissions from international ocean
ship** has meant that the latest regulations of the International Maritime Organization …

Global land and water limits to electrolytic hydrogen production using wind and solar resources

D Tonelli, L Rosa, P Gabrielli, K Caldeira… - Nature …, 2023 - nature.com
Proposals for achieving net-zero emissions by 2050 include scaling-up electrolytic hydrogen
production, however, this poses technical, economic, and environmental challenges. One …

Form-stable phase change composites: Preparation, performance, and applications for thermal energy conversion, storage and management

MQ Wu, S Wu, YF Cai, RZ Wang, TX Li - Energy Storage Materials, 2021 - Elsevier
Phase change materials (PCMs) have been extensively characterized as promising energy
materials for thermal energy storage and thermal management to address the mismatch …

Life-cycle assessment of an industrial direct air capture process based on temperature–vacuum swing adsorption

S Deutz, A Bardow - Nature Energy, 2021 - nature.com
Current climate targets require negative carbon dioxide (CO2) emissions. Direct air capture
is a promising negative emission technology, but energy and material demands lead to …

Assessment of energy storage technologies: A review

MM Rahman, AO Oni, E Gemechu, A Kumar - Energy Conversion and …, 2020 - Elsevier
Incorporating renewables in the power grid has challenges in terms of the stability, reliability,
and acceptable operation of the power system network. One possible solution is to integrate …

Hydrogen as an energy vector

Z Abdin, A Zafaranloo, A Rafiee, W Mérida… - … and sustainable energy …, 2020 - Elsevier
Hydrogen is known as a technically viable and benign energy vector for applications
ranging from the small-scale power supply in off-grid modes to large-scale chemical energy …

Electro-organic synthesis–a 21 st century technique

D Pollok, SR Waldvogel - Chemical science, 2020 - pubs.rsc.org
The severe limitations of fossil fuels and finite resources influence the scientific community to
reconsider chemical synthesis and establish sustainable techniques. Several promising …

Worldwide greenhouse gas emissions of green hydrogen production and transport

K De Kleijne, MAJ Huijbregts, F Knobloch, R van Zelm… - Nature Energy, 2024 - nature.com
Large-scale introduction of green hydrogen is envisioned to play an important role in
reaching net-zero greenhouse gas emissions. The production and transport of green …

[HTML][HTML] Gleaning insights from German energy transition and large-scale underground energy storage for China's carbon neutrality

Y **e, X Wu, Z Hou, Z Li, J Luo, CT Lüddeke… - International Journal of …, 2023 - Elsevier
The global energy transition is a widespread phenomenon that requires international
exchange of experiences and mutual learning. Germany's success in its first phase of …