Significant progress has been made in direct air capture (DAC) in recent years. Evidence suggests that the large-scale deployment of DAC by adsorption would be technically …
J Wang, R Fu, S Wen, P Ning, MH Helal… - … Composites and Hybrid …, 2022 - Springer
As a major component of greenhouse gases, excessive carbon dioxide (CO2) in the atmosphere can affect human health and ecosystems. Therefore, the capture and …
The urgency to address global climate change induced by greenhouse gas emissions is increasing. In particular, the rise in atmospheric CO2 levels is generating alarm …
L Zhang, Y Song, J Shi, Q Shen, D Hu, Q Gao… - … in Atmospheric Sciences, 2022 - Springer
CO2 capture, utilization, and storage (CCUS) technology is a rare option for the large-scale use of fossil fuels in a low-carbon way, which will definitely play a part in the journey towards …
CO2 capture is one of the cardinal technologies to combat the ever-escalating CO2 concentration in the atmosphere and to address the global climate change. Among the …
X Duan, G Song, G Lu, Y Wang, J Sun, A Chen… - Materials Today …, 2023 - Elsevier
Abstract Sustainable Direct Air Capture (DAC) of CO 2 is a key issue in negative carbon technologies and is essential to return CO 2 concentrations to pre-industrial revolution …
A Ghorai, H Chung - Advanced Materials, 2024 - Wiley Online Library
In this study, an innovative and cost‐effective ionic polymer for CO2 capture and utilization for the first time, using abundant and nonfood‐based biomass lignin is reported. The …
H Pan, C Yu, X Suo, L Yang, X Cui… - Materials Chemistry …, 2023 - pubs.rsc.org
The rapidly increasing concentration of atmospheric carbon dioxide (CO2) is a growing threat to human society. Selective capture of CO2 remains challenging but of global …
The increase in CO2 concentration in the atmosphere has prompted the research community to find solutions for this environmental problem, which causes climate change …