Academic literature on the topic 'Belite-Ye'elimite-Ferrite cements'

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Journal articles on the topic "Belite-Ye'elimite-Ferrite cements"

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De la Torre, Angeles G., Diana Londono-Zuluaga, Jesus D. Zea-Garcia, et al. "X-ray diffraction, cements and environment, three worlds in one." MATEC Web of Conferences 149 (2018): 01003. http://dx.doi.org/10.1051/matecconf/201814901003.

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This keynote lecture will be focused on the strategies for reducing CO2 emissions in the cement production. Concretely, the production of ecocements with optimised formulations that yield reductions in CO2 emissions of up to 25%, when compared to OPC production. Phase assemblage has to be carefully optimised to be competitive and these new ecocements should develop compressive strengths of at least 50 MPa at 28 days of hydration. Optimised compositions of several ecocements will be discussed, but all of them are ye'elimite or calcium sulphoaluminate containing ones: belite-ye'elimite-ferrite (
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Álvarez-Pinazo, Gema, Isabel Santacruz, Miguel A. G. Aranda, and Ángeles G. De la Torre. "Hydration of belite–ye'elimite–ferrite cements with different calcium sulfate sources." Advances in Cement Research 28, no. 8 (2016): 529–43. http://dx.doi.org/10.1680/jadcr.16.00030.

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Pérez-Bravo, Raquel, Alejandro Morales-Cantero, Margherita Bruscolini, Miguel AG Aranda, Isabel Santacruz, and la Torre Angeles G. De. "Data for: Effect of boron and water-to-cement ratio on the performances of laboratory prepared Belite-Ye'elimite-Ferrite (BYF) cements." Materials 14 (August 4, 2021): 4862. https://doi.org/10.5281/zenodo.4926033.

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ASCII files of LXRPD patterns of all the cements (anhydrous and pastes) mixed with quartz.&nbsp; Two columns files: 2theta and intensity. Wavelength CuK&alpha;<sub>1</sub> (&lambda; = 1.5406 &Aring;). &nbsp; To perform the ACn calculation, the Ws (weight percentage of internal standard) is included in the first line of each file. &nbsp; https://doi.org/10.3390/ma14174862
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Zajac, Maciej, Jan Skocek, Christopher Stabler, Frank Bullerjahn, and Mohsen Ben Haha. "Hydration and performance evolution of belite–ye'elimite–ferrite cement." Advances in Cement Research 31, no. 3 (2019): 124–37. http://dx.doi.org/10.1680/jadcr.18.00110.

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Koga, Guilherme Yuuki, Blandine Albert, Virginie Roche, and Ricardo Pereira Nogueira. "A comparative study of mild steel passivation embedded in Belite-Ye'elimite-Ferrite and Porland cement mortars." Electrochimica Acta 261 (January 2018): 66–77. http://dx.doi.org/10.1016/j.electacta.2017.12.128.

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Wang, Fan, Guangcheng Long, Min Bai, et al. "A new perspective on Belite-ye'elimite-ferrite cement manufactured from electrolytic manganese residue: Production, properties, and environmental analysis." Cement and Concrete Research 163 (January 2023): 107019. http://dx.doi.org/10.1016/j.cemconres.2022.107019.

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Koga, Guilherme Yuuki, Paul Comperat, Blandine Albert, Virginie Roche, and Ricardo Pereira Nogueira. "Effect of endogenous chloride contamination on the electrochemical and hydration responses of reinforced Belite-Ye'elimite-Ferrite (BYF) cement mortars." Cement and Concrete Research 122 (August 2019): 212–26. http://dx.doi.org/10.1016/j.cemconres.2019.04.022.

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Koga, Guilherme Yuuki, Blandine Albert, and Ricardo Pereira Nogueira. "On the hydration of Belite-Ye'elimite-Ferrite (BYF) cement pastes: Effect of the water-to-cement ratio and presence of fly ash." Cement and Concrete Research 137 (November 2020): 106215. http://dx.doi.org/10.1016/j.cemconres.2020.106215.

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Morin, Vincent, Pipat Termkhajornkit, Bruno Huet, and Gerard Pham. "Impact of quantity of anhydrite, water to binder ratio, fineness on kinetics and phase assemblage of belite-ye'elimite-ferrite cement." Cement and Concrete Research 99 (September 2017): 8–17. http://dx.doi.org/10.1016/j.cemconres.2017.04.014.

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Yio, Marcus, Yi Ng, Pengkun Hou, Tsz Chun Chan, and Hong Wong. "Belite-ye'elimite-ferrite cements produced from London Clay." Advances in Cement Research, September 24, 2024, 1–23. http://dx.doi.org/10.1680/jadcr.23.00239.

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London Clay (LC) is generated in significant quantities from major infrastructure development projects within and around London. Excavated LC spoils are typically landfilled or used for landscaping purposes with minimal value. This study investigates the feasibility of producing belite-ye'elimite-ferrite (BYF) cements using London Clay (LC) in combination with kaolin or low-grade bauxite. Six cement clinkers with varying compositions were synthesised at 1300°C. The phase composition of the synthesised clinkers was quantified using XRD coupled with Rietveld refinement. The hydration behaviour,
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Dissertations / Theses on the topic "Belite-Ye'elimite-Ferrite cements"

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Wang, Jia. "Hydration mechanism of cements based on low-CO2 clinkers containing belite, ye’elimite and calcium alumino-ferrite." Thesis, Lille 1, 2010. http://www.theses.fr/2010LIL10169/document.

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L’objectif de ce travail a été d’apporter une meilleure compréhension des mécanismes réactionnels de l’hydratation de ciments appartenant à la famille de ciment BCSAF afin de développer des schémas réactionnels simplifiés permettant d’optimiser les ciments à base d’un clinker BCSAF et d’autres constituants pour des applications spécifiques. Les ciments étudiés ont été réalisés à partir d’un clinker contenant 52% de belite, 33% de ye’elimite and 14% de ferrite et diverses quantités d’anhydrite et de calcaire. A partir de l’étude détaillée de l’hydratation d’un ciment contenant 95% de clinker et
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