Exploring the Potential of Nonclassical Crystallization Pathways to Advance Cementitious Materials

C Ruiz-Agudo, H Cölfen - Chemical Reviews, 2024 - ACS Publications
Understanding the crystallization of cement-binding phases, from basic units to macroscopic
structures, can enhance cement performance, reduce clinker use, and lower CO2 emissions …

Reaction Layer Formation on MgO in the Presence of Humidity

JN Bracco, G Camacho Meneses, O Colón… - … Applied Materials & …, 2023 - ACS Publications
Mineralization by MgO is an attractive potential strategy for direct air capture (DAC) of CO2
due to its tendency to form carbonate phases upon exposure to water and CO2. Hydration of …

Removal of arsenate from aqueous solutions by transformation of cerussite to mimetite

E Stępień, M Julia, D Buczko, M Bottaro, A Kappler… - Chemical …, 2025 - Elsevier
Water pollution by arsenic is a growing concern due to its toxicity and health effects,
prompting research on its immobilization. A novel method for removing arsenate ions from …

Iron Impurity Impairs the CO2 Capture Performance of MgO: Insights from Microscopy and Machine Learning Molecular Dynamics

K Yuan, N Rampal, S Adapa, BR Evans… - … Applied Materials & …, 2024 - ACS Publications
Magnesium oxide (MgO) is a promising sorbent for direct air capture (DAC) of carbon
dioxide. Iron (Fe) is a common impurity in naturally occurring MgO and minerals used to …

[HTML][HTML] Passive direct air capture using calcium oxide powder: The importance of water vapor

L Dostie, K Rausis, IM Power - Journal of Cleaner Production, 2024 - Elsevier
Calcium oxide (CaO; lime) loo** is a proposed technology with the potential to capture
gigatonnes of carbon dioxide (CO 2) from the atmosphere to help mitigate climate change …

[HTML][HTML] Carbon sequestration behavior of magnesium oxychloride cement based on salt lakes magnesium residue and industrial solid waste

Y Li, B Li, W Zheng, J Zhou, J Wen, J Dong… - Carbon Capture Science …, 2024 - Elsevier
With the extensive utilization of lithium-ion battery in the electric vehicle and energy storage
field, the consumption of lithium has been sharply increasing. Lithium resource occurrence …

[HTML][HTML] Design of alkali metal oxide adsorbent for direct air capture: Identification of physicochemical adsorption and analysis of regeneration mechanism

L Huang, J Ma, F Wang, G Xu, H Zhao - Carbon Capture Science & …, 2024 - Elsevier
Direct air capture (DAC) represents an advanced negative carbon emission technology, with
the key being high-performance CO 2 adsorbents. First, this work carefully identifies CO 2 …