Molten salt-promoted MgO-based CO2 adsorbents: Selective adsorption on polycrystalline surfaces
Author:
Funder
National Natural Science Foundation of China
Qinghai Provincial Department of Science and Technology
Publisher
Elsevier BV
Reference46 articles.
1. Investigation of hydration/dehydration processes in a fluidized bed reactor using MgO/Mg(OH)2 thermochemical energy storage system;Yan;Sol. Energy,2022
2. CO2 capture behavior and chemical structure of the alkali zirconate-silicate hybrid sorbent from ZrSiO4 by alkali activation method;Wang;J. CO2 Util.,2021
3. Characteristics of Na-Mg double salt for high-temperature CO2 sorption;Lee;Chem. Eng. J.,2014
4. Promoting effects of Li3PO4 and CaCO3 on the intermediate-temperature CO2 adsorption over molten NaNO3-promoted MgO-based sorbents;Dong;Chem. Eng. J.,2022
5. Unravelling the role of alkaline earth metal carbonates in intermediate temperature CO2 capture using alkali metal salt-promoted MgO-based sorbents;Cui;J. Mater. Chem. A,2020
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1. Promotional effect of NaNO3/NaNO2 on CO2 adsorption performance of MgO sorbents;Chemical Engineering Science;2024-11
2. Experimental and DFT study of Na4SiO4 doped with oxysalts for high-temperature CO2 capture;Chemical Engineering Journal;2024-09
3. NaNO3-Promoted MgO-Based Adsorbents Prepared from Bischofite for CO2 Capture: Experimental and Density Functional Theory Study;Langmuir;2024-02-22
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