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Seite - 97 - in Intelligent Environments 2019 - Workshop Proceedings of the 15th International Conference on Intelligent Environments

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3. Due to the low solubility of Fe2O3 in water, the area of the neck formed between hematite particles is small compared to the necks between lime particles. In this way the solid phase effective surface able to transfer the heat becomes lower, thus improving the thermal insulation capability. Acknowledgements Scientific-Technical Services of UIB (Spain) and the assistance of Prof. Dr. Ir. Jan Van Humbeeck, Katholieke Universiteit Leuven (Belgium) in particle size determination are gratefully acknowledged. References [1] European Commission, EU Energy, 2013, transport and GHG emissions, trends to 2050 reference scenario. [2] F. Asdrubali, F. D'Alessandro, S. Schiavoni. 2015, A review of unconventional sustainable building insulation materials. Sustainable MaterialsandTechnologies 4, pp. 1–17. [3] A. Brás, P. Faria. 2017, Effectiveness of mortars composition on the embodied carbon long-term impact. Energy and Buildings, 154, pp. 523-528. [4] A. Synnefa, M. Santamouris, H. Akbari, 2007, Estimating the effect of using cool coatings on energy loads and termal comfort in residential buildings in various climatic conditions, Energy and Buildings, 39, pp. 1167– 1174. [5] B. Alorda-Ladaria, J. Muñoz-Gomila, F.Forteza-Oliver, G. Horrach- Sastre, 2013, Sistema de construcción modular sensorizada, Congreso de edificios Inteligentes, ISBN: AE-2012-12011879. [6] K. Van Balen., 2005, Carbonation reaction of lime, kinetics at ambient temperature. Cement and Concrete Research 35, pp. 647 – 657. [7] M. Galván-Ruiz, R. Velázquez-Castillo., 2011, Lime, an Ancient Material as a Renewed Option for Construction. Ingeniería Investigación y Tecnología. 12, pp. 93-102. [8] Soumia Mounir, Youssef Maaloufa, Abou bakr Cherki, Abdelhamid Khabbazi. 2014, Thermal properties of the composite material clay/granular cork. Construction and Building Materials 70, pp. 183- 190. [9] S. Benfratello, C. Capitano, G. Peri, G. Rizzo, G. Sorrentino, 2013, Thermal and structural properties of a hemp-lime biocomposite. Construction and Building Materials 48, pp. 745-754. [10] F. Barreca, C.R. Fichera. , 2013, Use of olive stone as an additive in cement lime mortarto improve thermal insulation. Energy and Buildings 62 , pp. 507-513. [11] A. Briga-Sá, D. Nascimento, N. Teixeira, J. Pinto, F. Caldeira, H. Varum, A. Paiva., 2013, Textile waste as an alternative thermal insulation building material solution. Construction and Building Materials 38, pp. 155-160. [19] [12] T. Ashour, H. Georg, W.Wu. 2011, Performance of straw bale wall: a case of study. Energy Build 43, pp. 1960–1967. [13] G.S. Kochhar, K. Manohar. Use of coconut fiber as a low-cost thermal insulator. In: Graves RS, Zarr RR, editors., 1997, Insulation materials: testing and applications, vol.3. West Conshohocken (PA) ASTM, pp. 283– 91. [14] http://www.engineeringtoolbox.com/thermal-conductivity-d_429.html [15] J. Shakelford, W. Alexander. Material science and engineering handbook 3rd Ed. CRC Press (2001). [16] R.E. Krebs. The History and Use of Our Earth's Chemical Elements. Greenwood Publishing Group (2006). [17] O.Acevedo-Sandoval,E.Ortiz-Hernández,M.Cruz-Sánchez,E.Cruz- Chávez. 2004, El papel de óxidos de hierro en suelos. Terra Latinoamericana 22, pp. 485-497. [18] ISO 12439. Mixing water for concrete, International Organization for Standarization, 2010. B.Alordaetal. /OverheatingMitigationStrategiesAnalysis: AMediterraneanCaseStudy 97
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Intelligent Environments 2019 Workshop Proceedings of the 15th International Conference on Intelligent Environments
Titel
Intelligent Environments 2019
Untertitel
Workshop Proceedings of the 15th International Conference on Intelligent Environments
Autoren
Andrés Muñoz
Sofia Ouhbi
Wolfgang Minker
Loubna Echabbi
Miguel Navarro-CĂ­a
Verlag
IOS Press BV
Datum
2019
Sprache
deutsch
Lizenz
CC BY-NC 4.0
ISBN
978-1-61499-983-6
Abmessungen
16.0 x 24.0 cm
Seiten
416
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