Tomas Hanzlicek, Ivana Perná, Zdenek Ertl. Insets show changes in temperature differences measured simultaneously with pH. Find more information on the Altmetric Attention Score and how the score is calculated. Kinetics of carbonation reaction of basic oxygen furnace slags in a rotating packed bed using the surface coverage model: Maximization of carbonation conversion. capture: utilization of response surface methodology, kinetic, and isotherm modeling. mineralization of alkaline solid wastes in a high-gravity rotating packed bed. Dongxing Xuan, Baojian Zhan, Chi Sun Poon, Wei Zheng. the Altmetric Attention Score and how the score is calculated. REAGENTS dry ice, solid CO. 2 calcium hydroxide solution, Ca(OH) 2 (aq) bromothymol-blue indicator (pK. Newly-designed traditional lime mortar with a phase change material as an additive. Modeling of the in-duct sorbent injection process for flue gas desulfurization. Radek Ševčík, Alberto Viani, Lucia Mancini, Marie-Sousai Appavou, Dita Machová. Portable quantitative confocal Raman spectroscopy: Non-destructive approach of the carbonation chemistry and kinetics. The Altmetric Attention Score is a quantitative measure of the attention that a research article has received online. F. Pontiga, J.M. Determining the performance for an integrated process of COD removal and CO2 capture. CO2 mineralisation of brines with regenerative hydrotalcites in a cyclical process. Kinetic Model for the Reaction of Ca(OH)2/Fly Ash Sorbents with SO2 at Low Temperatures. How Microstructure and Pore Moisture Affect Strength Gain in Portlandite-Enriched Composites That Mineralize CO2. Calcium hydroxide react with carbon dioxide to produce calcium carbonate and water. https://doi.org/10.1016/j.cej.2011.09.021. Long Ji, Hai Yu, Bing Yu, Ruijie Zhang, David French, Mihaela Grigore, Xiaolong Wang, Zuliang Chen. Kinetics of the Sulfation of Ca(OH)2 at Low Temperatures. Brucite [Mg(OH2)] carbonation in wet supercritical CO2: An in situ high pressure X-ray diffraction study. Kinetics and Mechanism of Direct Reaction between CO2 and Ca(OH)2 in Micro Fluidized Bed. Knijnenburg, Florentine M. Hilty, Frank Krumeich, Michael B. Zimmermann, Sotiris E. Pratsinis. Wei Gu, Douglas W. Bousfield, Carl P. Tripp. Romero-Ibarra, H. Pfeiffer, H. Balmori-Ramírez, C. Gómez-Yáñez. Amorphous and crystalline calcium carbonate phases during carbonation of nanolimes: implications in heritage conservation. CO2 capture from atmospheric air via consecutive CaO-carbonation and CaCO3-calcination cycles in a fluidized-bed solar reactor. Marchetti Mario, Mechling Jean-Michel, Diliberto Cécile, Brahim Mohamed-Nadjib, Trauchessec Romain, Lecomte André, Bourson Patrice. Ana M. López-Periago, Roberta Pacciani, Lourdes F. Vega, and Concepción Domingo . To whom correspondence should be addressed. CO2 capture from air via CaO-carbonation using a solar-driven fluidized bed reactor—Effect of temperature and water vapor concentration. CO2 Mineralization and Utilization Using Various Calcium-Containing Wastewater and Refining Slag via a High-Gravity Carbonation Process. The carbonation of Ca(OH)2 was well described by the asymptotic equation which is obtained by assuming chemical reaction control and considering the surface coverage by product. A realistic approach to modeling an in-duct desulfurization process based on an experimental pilot plant study. Effect of relative humidity on the carbonation rate of portlandite, calcium silicate hydrates and ettringite. Real-time investigation of reaction rate and mineral phase modifications of lime carbonation. Cements in the 21 Integrated leaching–carbonation kinetic model on CO CO2 capture at ambient temperature in a fixed bed with CaO-based sorbents. DFT study of the carbonation on mineral aerosol surface models of olivine: effect of water. Arjun Rao, Edward J. Anthony, Vasilije Manovic. Long-term curing impact on properties, mineral composition and microstructure of hemp shive-cement composite. Multimineral nutritional supplements in a nano-CaO matrix. 2. (a) Calcium hydroxide + Carbon dioxide → Calcium carbonate + Water(b) Zinc + Silver nitrate → Zinc nitrate + Silver(c) Aluminium + Copper chloride → Aluminium chloride + Copper(d) Barium chloride + Potassium sulphate → Barium sulphate + Potassium chloride Jian Yu, Xi Zeng, Guangyi Zhang, Juwei Zhang, Yin Wang, and Guangwen Xu . Damien Daval, Isabelle Martinez, Jérôme Corvisier, Nathaniel Findling, Bruno Goffé, François Guyot. A New and Original Method to Produce Ca(OH)2 Nanoparticles by Using an Anion Exchange Resin. Effect of SO2 on the Reaction of Calcium Hydroxide with CO2 at Low Temperatures. Rosso. A novel and green CO2 adsorbent developed with high adsorption properties in a coal mine refuge chamber. Windisch, B.P. Structural Properties and Reactivities of Ca(OH)2/Fly Ash Sorbents for Flue Gas Desulfurization. century: Challenges, perspectives, and opportunities. Dissolution and storage stability of nanostructured calcium carbonates and phosphates for nutrition. Li2SiO3 fast microwave-assisted hydrothermal synthesis and evaluation of its water vapor and CO2 absorption properties. Shu-Yuan Pan, Pen-Chi Chiang, Yi-Hung Chen, Chung-Sung Tan, E.-E. Chang. e) Ammonium nitrate → Nitrogen + Carbon dioxide + water. Damien Daval, Roland Hellmann, Jérôme Corvisier, Delphine Tisserand, Isabelle Martinez, François Guyot. Study on purification characteristic of CO2 and CO within closed environment of coal mine refuge chamber. Ye Wu, Xiaoping Chen, Maciej Radosz, Maohong Fan, Wei Dong, Zhonglin Zhang, Zhen Yang. Hydrated Lime Reaction with HCl under Simulated Flue Gas Conditions. Carbon Dioxide Sequestration in Cement Kiln Dust through Mineral Carbonation. Find more information about Crossref citation counts. Martin, K.M. Giuliana Taglieri, Valeria Daniele, Giovanni Del Re, Roberto Volpe. Characterization of aerial lime-based mortars with addition of biopolymers. 127 publications. at low temperatures. Effect of H2O on Mg(OH)2 carbonation pathways for combined CO2 capture and storage. The kinetics of the reaction of Ca(OH)2 with CO2 in humid N2 has been studied at 60−90 °C by using a differential reactor. Experimental and modeling of CO2 capture by dry sodium hydroxide carbonation.
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