Accesso libero

Accelerated Carbonation of Binders Containing SCM at High CO2 Concentration

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Šavija B & Luković M: “Carbonation of cement paste: Understanding, challenges, and opportunities”. Construction and Building Materials. Vol. 117, 2016, pp. 285-301. Search in Google Scholar

Liu X, Feng P, Cai Y, Yu X, Yu C & Ran Q: “Carbonation behavior of calcium silicate hydrates (C-S-H): Its potential for CO2 capture”. Chemical Engineering Journal. Vol. 431, Part 3, 2022, 134243. Search in Google Scholar

De Weerdt K, Plusquellec G, Belda Revert A, Geiker M.R & Lothenbach B: “Effect of carbonation on the pore solution of mortar”. Cement and Concrete Research. Vol. 118, 2019, pp. 38-56. Search in Google Scholar

Andersson R, Stripple H, Gustafsson T & Ljungkrantz C: “Carbonation as a method to improve climate performance for cement-based material”. Cement and Concrete Research. Vol. 124, 2019, 105819. Search in Google Scholar

Lundgren M, Babaahmadi A & Mueller U: “On the porosity development in cement pastes containing slag: influence of curing conditions and the effect of carbonation”. Proceedings, XXIII Nordic Concrete Research Symposium, Aalborg, Denmark, August 2017, pp.89-92. Search in Google Scholar

Johannesson B & Utgenannt P: “Microstructural changes caused by carbonation of cement mortar”. Cement and Concrete Research. Vol. 31, 2001, pp. 925-931. Search in Google Scholar

Galan I, Andrade C, Mora P, Sanjuan M A, Lopez-Agüi J C & Prieto M: “CO2 sink effect of concrete carbonation”. Proceedings, 2nd International Conference on Sustainable Construction Materials and Technologies, Ancona, Italy, June 2010, pp. 123-124. Search in Google Scholar

Borges P H R, Costa J O, Milestone N B, Lynsdale C J & Streatfield E: “Carbonation of CH and C-S-H in composite cement pastes containing high amounts of BFS”. Cement and Concrete Research, Vol 40, Issue 2, 2010, pp. 284-292. Search in Google Scholar

Drouet E, Poyet S, Le Bescop P, Torrenti J M & Bourbon X: “Carbonation of hardened cement pastes: Influence of temperature”. Cement and Concrete Research, 2019, Vol. 115, pp. 445-459. Search in Google Scholar

Thiery M, Dangla P, Belin P, Haberg G & Rousell N: “Carbonation kinetics of a bed of recycled concrete aggregates: A laboratory study on model materials”. Cement and Concrete Research, 2013, pp 50-65. Search in Google Scholar

Zhang J & Scherer G W: “Comparison of methods for arresting hydration of cement”. Cement and Concrete Research, Vol 41, 2021, pp. 1024-1036. Search in Google Scholar

Lothenbach B, Durdziński & De Weerdt K: “Thermogravimetric analysis”. Chapter 5, “A Practical Guide to Microstructural Analysis of Cementitious Materials” (Edited by Scrivener K, Snellings R & Lotenbach, B), CRC Press, USA, 2016, 36 pp. Search in Google Scholar

Vogler N, Drabetzki P, Lindemann M & Kühne H C: “Description of the concrete carbonation process with adjusted depth resolved thermogravimetric analysis”. Journal of Thermal Analysis and Calorimetry, Vol. 147, 2022, pp. 6167-6180. Search in Google Scholar

Jang J G & Lee H K: “Microstructural densification and CO2 uptake promoted by the carbonation curing of belite-rich Portland cement”. Cement and Concrete Research, Vol. 82, 2016, pp. 50-57. Search in Google Scholar

Thiery M, Villain G, Dangla P & Platret G: “Investigation of the carbonation front shape on cementitious materials: effects of the chemical kinetics”. Cement and Concrete Research, Vol. 37, 2007, pp. 1047-1058. Search in Google Scholar

Gruyaert E, Van den Heede P & De Biele N: “Carbonation of slag concrete: Effect of the cement replacement level and curing on the carbonation coefficient – Effect of carbonation on the pore structure”. Cement and Concrete Research, Vol 35, 2013, pp. 39-48. Search in Google Scholar

Mueller U, Lundgren M & Malaga K: “Development of pore structure and hydrate phases of binder pastes blended with slag, fly ash and metakaolin – A comparison”. Proceedings, 14th International Concress on the Chemistry of Cement (ICCC), China, Beijing, October 2015. Search in Google Scholar

Mueller U, Lundgren M & Babaahmadi A: “Hydration of concrete binders blended with ground granulated blastfurnace slag, fly ash and metakaolin”. RISE Report: 2017:6, RISE Borås, Sweden, 2017. Search in Google Scholar

Von Greve-Dierfeld S, Lothenbach B, Vollpracht A, Wu B, Huet B, Andrade C, Medina C, Thiel C, Gruyaert E, Vanoutrive H, Saéz del Bosque I F, Ignjatovic I, Elsen J, Provis J L, Scrivener K, Thienel K C, Sideris K, Zajac M, Alderete N, Cizer Ö, van den Heede P, Hooton R D, Kamali-Bernard S, Bernal S A, Zhao Z, Shi Z & de Belie N: “Understanding the carbonation of concrete with supplementary cementitious materials: a critical review by RILEM TC 281-CCC”. Material and Structures, 2020, Vol. 53, no.6, pp. 1-34 Search in Google Scholar

eISSN:
2545-2819
Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Materials Sciences, Materials Processing