Academic literature on the topic 'Technologies of building materials'

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Journal articles on the topic "Technologies of building materials"

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Stevulova, Nadezda, Kestutys Baltakys, Adriana Estokova, and Tomas Sverak. "Sustainable Building Materials and Technologies." Advances in Materials Science and Engineering 2017 (2017): 1–2. http://dx.doi.org/10.1155/2017/8982124.

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Stevulova, Nadezda, Kestutys Baltakys, Adriana Estokova, Vojtech Vaclavik, and Sanja Dimter. "Sustainable Building Materials and Technologies 2020." Advances in Materials Science and Engineering 2022 (January 25, 2022): 1–2. http://dx.doi.org/10.1155/2022/9797342.

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Stevulova, Nadezda, Kestutis Baltakys, Adriana Estokova, and Tomas Sverak. "Sustainable Building Materials and Technologies 2018." Advances in Materials Science and Engineering 2018 (November 4, 2018): 1–2. http://dx.doi.org/10.1155/2018/9491813.

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Akhmedov, Zokir Jurayevich. "EFFICIENT BUILDING MATERIALS AND METHODS OF BUILDING CONSTRUCTION." Modern Scientific Research International Scientific Journal 1, no. 3 (2023): 196–200. https://doi.org/10.5281/zenodo.8032131.

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One of the main tasks of construction in modern Uzbekistan is to reduce its cost and increase energy efficiency. New economic conditions predetermine the peculiarities of the approach to the choice of efficient construction technologies, building materials, products and structures in the construction of buildings.
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Kumar, Ashok, P. S. Chani, and Rajesh Deoliya. "Low Embodied Energy Sustainable Building Materials and Technologies." Key Engineering Materials 650 (July 2015): 13–20. http://dx.doi.org/10.4028/www.scientific.net/kem.650.13.

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Construction industry is one of the largest consumers of the natural resources and responsible for substantial amount of CO2emission in the world. The purpose of this paper is to carry out comprehensive literature review on the low embodied energy materials and techniques used in the existing and / or new buildings in India. The paper also compares the conventional building materials and techniques, with alternative ones to assess their superiority. An investigation into the energy consumed by the building materials and techniques is computed to find out the embodied energy requirements to pro
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Oluwatosin, Egbebi Adeleke. "Adoption of Advanced Building Technologies and Materials in Construction Project Management." International Journal of Research Publication and Reviews 5, no. 7 (2024): 423–31. http://dx.doi.org/10.55248/gengpi.5.0724.1616.

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Delgado, J. M. P. Q., Robert Cerný, A. G. Barbosa de Lima, and A. S. Guimarães. "Advances in Building Technologies and Construction Materials." Advances in Materials Science and Engineering 2015 (2015): 1–3. http://dx.doi.org/10.1155/2015/312613.

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Subbotin, O. "BUILDING MATERIALS AND TECHNOLOGIES OF MODERN HOUSING: ARCHITECTURAL AND ENVIRONMENTAL ASPECTS." Construction Materials and Products 2, no. 4 (2020): 84–88. http://dx.doi.org/10.34031/2618-7183-2019-2-4-84-88.

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the questions of architectural and environmental solutions in the field of design and construction of low-rise residential buildings, including the distinctive properties of building materials due to the conditions of modern material culture, aesthetic features of the external and internal appearance of these buildings are considered. It is noted that the conceptual approach to the choice of technologies in the construction of these objects helps to determine the necessary organization and structure of work, as well as additional artistic methods of architectural expression. It is also indicat
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Cheekatamarla, Praveen. "Opportunities for Catalytic Reactions and Materials in Buildings." Encyclopedia 2, no. 1 (2021): 36–55. http://dx.doi.org/10.3390/encyclopedia2010004.

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Residential and commercial buildings are responsible for over 30% of global final energy consumption and accounts for ~40% of annual direct and indirect greenhouse gas emissions. Energy efficient and sustainable technologies are necessary to not only lower the energy footprint but also lower the environmental burden. Many proven and emerging technologies are being pursued to meet the ever-increasing energy demand. Catalytic science has a significant new role to play in helping address sustainable energy challenges, particularly in buildings, compared to transportation and industrial sectors. T
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Ghadge, Vijaya Jayasing, B. A. Konnur, and A. B. Landage. "Sustainable Development Through Appropriate Technologies." Journal of Interior Designing and Regional Planning 7, no. 1 (2022): 24–27. http://dx.doi.org/10.46610/joidrp.2022.v07i01.002.

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The phrase "sustainability" relates to various building operations and various site designs for buildings, and maintenance work which includes repair, and demolition that have the least environmental impact. Structural engineers, building contractors and their number of clients, and designers must work cooperatively throughout the project. One of the most critical topics in the construction industry is sustainable development. Appropriate technology is small-scale technology that is easy to manage on a local level. Due to India's rapid urbanization, the building industry is experiencing a slew
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Dissertations / Theses on the topic "Technologies of building materials"

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Cohen, David H. "The adoption of innovative wood processing technologies in the building products industry." Diss., Virginia Polytechnic Institute and State University, 1989. http://hdl.handle.net/10919/54508.

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The strategic importance of the adoption of innovative processing technologies was analyzed for building products businesses. This study examined the two components of wood building products businesses: the structural panel industry and the softwood Iumber industry. To ensure that the relevance of adopting of innovative processing technologies was examined within an accurate contextual environment, additional important strategies and performance were also measured. A mail survey of the seventy-five largest North American producers of these two products provided the primary data necessary to i
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Manikanti, Murali Krishna. "Building Information Modelling for rehabilitation projects of historic buildings. A case study on building pathologies." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2021.

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The modern construction industry has undergone several changes since the introduction of Building information modelling (BIM). Mistakes that occur repeatedly and inevitably in the design and construction process could be controlled to a greater extent with the introduction of BIM. But using BIM for existing building has been a challenge. The usefulness of BIM is further challenged by features and interoperability issues with the lack of a user-friendly interface. Thus, many research opportunities when creating economical and automated BIM of existing buildings achieve a certain level of BIM ma
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Tettey, Uniben Yao Ayikoe. "Primary energy use of residential buildings : implications of materials, modelling and design approaches." Doctoral thesis, Linnéuniversitetet, Institutionen för byggd miljö och energiteknik (BET), 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-61470.

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Buildings can play an essential role in the transition to a sustainable society. Different strategies, including improved energy efficiency in buildings, substitution of carbon intensive materials and fuels, efficient energy supply among others can be employed for this purpose. In this thesis, the implications of different insulation materials, modelling and design strategies on primary energy use of residential buildings are studied using life cycle and system perspective. Specifically, the effects of different insulation materials on production primary energy and CO2 emission of buildings wi
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Ibrahim, Josif, and Ahmad Kateesh. "Comparison of two different materials on frame systems with focus on life cycle analysis." Thesis, KTH, Byggteknik och design, 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-278747.

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The structural engineer should not only be able to perform design calculations but also findmore efficient solutions for building parts. The purpose of this thesis is to redesign a concreteframe for a house (an apartment building) into a light frame with steel columns andcompartment walls, as well as perform a life cycle analysis for materials on both frames anddetermine the frame with the lowest environmental impact.The result shows that the lightweight frame with steel columns and compartment walls is amuch better choice for the environment as it stands only for 60 000 kg CO2e compared tocon
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Frojdén, Jonathan. "Betydelsen av brännbart och obrännbart material i ett brandförlopp : En jämförande studie." Thesis, Högskolan i Gävle, Energisystem och byggnadsteknik, 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-30141.

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I och med de ändringar som trädde i kraft 1993/94 då funktionskrav för konstruktioner infördes istället för de enskilda materialens egenskaper lade grunden till att det numer är möjligt att bygga byggnader som kräver en hög grad av brandskydd i trä och andra material baserade på brännbart material. Denna ändring innebar bland annat att nya och innovativa produkter hade chans att etablera sig på den svenska marknaden, såsom isolering tillverkad av returpapper och träfiber. I och med träets naturliga förmåga att till viss grad motstå brand, bland annat genom att bilda ett skyddande kolskikt, i k
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Смирнов, Василь Анатолійович, Василий Анатольевич Смирнов, Vasyl Anatoliiovych Smyrnov, et al. "Implementation of additive technologies for the complex development of buildings and structures by means of 3D printing." Thesis, Sumy State University, 2017. http://essuir.sumdu.edu.ua/handle/123456789/66719.

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An uninterrupted movement towards the implementation of the basic principles of the 4th industrial revolution, well-known as “Industry 4.0” [1], requires an application of 3D printing to create buildings and structures that fundamentally changes our traditional viewpoint.
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Rask, Fredrik. "Life Cycle Assessment and comparison of the climate impact of structural members and floor systems constructed in concrete, steel and timber." Thesis, KTH, Byggnadsmaterial, 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-256506.

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In this report the climate impact is determined for some basic structural elements made in steel,>mber and concrete. The aim is to compare the climate impact of these three building materials byquan>fying the emissions related to the produc>on and construc>on of some typical structures.The comparison comprise two parts, were one is the comparison of members in bending,compression and tension and the other part is the comparison of a couple of floor structures.The emissions are determined through a Life Cycle Assessment, LCA. The members are comparedwith respect to their load bearin
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Lennartsson, Erika, and Eleonor Johansson. "IMPLEMENTERING AV BIM VID MATERIALDOKUMENTATION : EN GRANSKNING AV MILJÖCERTIFIERINGS UTVECKLING." Thesis, Tekniska Högskolan, Högskolan i Jönköping, JTH, Byggnadsteknik och belysningsvetenskap, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:hj:diva-36576.

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Purpose: The study relies upon the development of green buildings due to an increased level of acknowledgement of environmental impacts, caused by the building industry. Building materials are one big factor that have a negative impact on the environment. Building Information Modeling (BIM) are constantly being developed in the construction industry because of unlimited technology. The purpose of this study is to see a digitalization of documentation of materials by using BIM, and what consequences this meets regarding coordination. Method: The study used three qualitative methods: literature
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Brodin, Sandra, and Kasper Moberg. "Återanvända och återvinna byggnadsmaterial : En undersökning av materialen trä och betong ur byggnadsstommen." Thesis, Högskolan i Gävle, Avdelningen för byggnadsteknik, energisystem och miljövetenskap, 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-33391.

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I denna rapport undersöks återanvändnings- och återvinningspotentialen för stommaterial ur byggnader i Sverige. De två materialen som har undersökts är betong och trä. Rapporten innehåller en litteraturstudie över återanvändning och återvinning. En fallstudie har även utförts på två byggnader. Den första byggnaden är ett småhus med träkonstruktion. Den andra byggnaden är ett flerbostadshus med betongkonstruktion. Byggsektorn står för stora mängder utsläpp och har en stor påverkan på miljön. Av allt material som ligger på deponi står byggbranschen för ca 35 % av allt material. Ett alternativ fö
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Lundkvist, Grönberg Amanda. "Materialinventering av byggnader inför rivning." Thesis, Luleå tekniska universitet, Institutionen för samhällsbyggnad och naturresurser, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-64256.

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Books on the topic "Technologies of building materials"

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Kolathayar, Sreevalsa, K. S. Sreekeshava, and N. Vinod Chandra Menon, eds. Recent Advances in Building Materials and Technologies. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-99-9458-8.

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Wessel, Robert, Paul Shipp, and Guy Rosenthal. Advances in gypsum technologies and building systems. ASTM International, 2015.

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Rossana, Atena, Kebel Igor, Fiechter Andrea, and Madrid (Spain). Empresa Municipal de Vivienda y Suelo. Área de Gobierno de Urbanismo, Vivienda e Infraestructuras., eds. Emerging technologies and housing prototypes. Empresa Municipal de Vivienda y Suelo, Área de Gobierno de Urbanismo, Vivienda e Infraestructuras, 2007.

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Regional Network in Asia for Low-Cost Building Materials Technologies and Construction Systems., ed. State of R & D on low-cost building materials & technologies in Asia. Regional Network in Asia for Low-Cost Building Materials Technologies and Construction Systems, 1987.

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1976-, Bilow Marcel, Strauss Holger 1974-, Khoshnevis Behrokh, and Leach Neil, eds. Rapids: Layered fabrication technologies for façades and building construction. 010 Publishers, 2010.

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United States. Congress. Office of Technology Assessment., ed. New structural materials technologies: Opportunities for the use of advanced ceramics and composites. Congress of the U.S., Office of Technology Assessment, 1986.

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Hao, Xie, Wu Xingkuan, and Knovel (Firm), eds. Green building technologies and materials: Selected, peer reviewed papers from the 2011 International Conference on Green Building Technologies and Materials (GBTM 2011), May 30, 2011, Brussels, Belgium. Trans Tech, 2011.

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Hao, Xie, and Wu Xingkuan, eds. Green building technologies and materials: Selected, peer reviewed papers from the 2011 International Conference on Green Building Technologies and Materials (GBTM 2011), May 30, 2011, Brussels, Belgium. Trans Tech, 2011.

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Strock, Harold B. Advanced structural ceramics: Markets, technologies, and competitive factors. Decision Resources, 1992.

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Tietz, Stefan B. New materials and new technologies: Their effect on building design and maintenance. Chartered Institute of Building, 1988.

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Book chapters on the topic "Technologies of building materials"

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Milardi, Martino. "Adaptive Building Technologies for Building Envelopes Under Climate Change Conditions." In The Urban Book Series. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-29515-7_62.

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AbstractFollowing the widespread recognition of the urgency of environmental and energy issues, cities, now under the influence of the pandemic crisis, are called to cope with them through adaptation strategies to future scenarios that are constantly changing. At the same time, the implementation of adaptive building envelopes seems to be a promising alternative to achieve higher quality levels in the built environment, especially to counter and mitigate climate change, in line with EU directives. Adaptive envelopes can modify physical or chemical characteristics, exploiting environmental stim
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Yadav, Jitendra, Varun Pratap Singh, and Ashwani Kumar. "Life Cycle Assessment of sustainable building materials." In Sustainable Technologies for Energy Efficient Buildings. CRC Press, 2024. http://dx.doi.org/10.1201/9781003496656-4.

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Francese, Dora. "Using Agricultural By-products for Creating Innovative Technologies and Materials." In Energy Efficient Building Design. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-40671-4_8.

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Samad, Muna Hanim Abdul, and Hafedh Abed Yahya. "Life Cycle Analysis of Building Materials." In Renewable Energy and Sustainable Technologies for Building and Environmental Applications. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-31840-0_12.

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Das, Shaswat Kumar, Subhabrata Mishra, Debadutta Das, Syed Mohammed Mustakim, Cyriaque Rodrigue Kaze, and Pankaj Kumar Parhi. "Characterization and Utilization of Coal Ash for Synthesis of Building Materials." In Clean Coal Technologies. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-68502-7_19.

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Tripathi, Shweta, Chandrajita Chakraborty, Bhupender Singh, Preet Kaur, and Ashok Kumar Yadav. "Smart building materials for energy and heat transfer optimization." In Sustainable Technologies for Energy Efficient Buildings. CRC Press, 2024. http://dx.doi.org/10.1201/9781003496656-3.

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Delgado, J. M. P. Q., A. S. Guimarães, and V. P. de Freitas. "Air Drying Technologies Applied to Buildings Treatment." In Drying and Wetting of Building Materials and Components. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-04531-3_1.

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Zhukov, Aleksey, and Ekaterina Shokodko. "Mathematical Methods for Optimizing the Technologies of Building Materials." In VIII International Scientific Siberian Transport Forum. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-37919-3_40.

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Kolathayar, Sreevalsa, K. S. Sreekeshava, N. Vinod Chandra Menon, Poonam Shekhawat, and C. Bhargavi. "Recent Advances in Building Materials and Technologies–An Introduction." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-99-9458-8_1.

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Rupal, Ashmita, Sanjay K. Sharma, and G. D. Tyagi. "Advances in Building Materials Industry by Annexation of Nano Materials." In Proceedings of International Conference on Innovative Technologies for Clean and Sustainable Development (ICITCSD – 2021). Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-93936-6_51.

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Conference papers on the topic "Technologies of building materials"

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Reich, Stefan, and Christian Pfütze. "Material composition for sustainable interior building elements." In IABSE Symposium, Tokyo 2025: Environmentally Friendly Technologies and Structures: Focusing on Sustainable Approaches. International Association for Bridge and Structural Engineering (IABSE), 2025. https://doi.org/10.2749/tokyo.2025.3233.

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<p>The supply of many traditional building materials will face considerable procurement difficulties in the near future, whether due to material shortages, changes in industrial production processes or rising costs of CO2 emissions. The development of new substitute materials is therefore urgently needed and should be a high priority in the construction industry.</p><p>The shortage of gypsum and gypsum plasterboard due to the conversion of coal-fired power plants to renewable energy generation will be eminent due to the lack of flue gas desulphurization and its by-product gyp
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Ikumapayi, Omolayo M., Temitayo S. Ogedengbe, Oluwasina L. Rominiyi, et al. "Efficacy of Impregnation of Building Materials with Micro/Nano Particles–a Review." In 2024 IEEE 5th International Conference on Electro-Computing Technologies for Humanity (NIGERCON). IEEE, 2024. https://doi.org/10.1109/nigercon62786.2024.10927014.

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Ranganathan, Chitra Sabapathy, A. Arokiaraj Jovith, P. Selvarani, S. Saravana Kumar, S. Sujatha, and K. A. Niranjan Kumar. "IoT-Driven Green Building Materials and Life Cycle Assessment with Gradient Boosting Machines." In 2024 International Conference on Smart Technologies for Sustainable Development Goals (ICSTSDG). IEEE, 2024. https://doi.org/10.1109/icstsdg61998.2024.11026661.

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Khan, Zeenat, and Majid Ali. "Innovative Building Insulation Solutions: Combating Global Warming with Advanced and Eco-Friendly Technologies." In 14th International Civil Engineering Conference. Trans Tech Publications Ltd, 2025. https://doi.org/10.4028/p-pqj5dd.

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Escalating greenhouse gas (GHG) emissions, with CO2 contributing approximately 76% of the total, are the primary drivers of global warming. The construction sector is a major contributor, currently responsible for about one-third of global energy consumption and associated emissions, with projections indicating a surge to 53% within the next decade due to accelerating urbanization and technological advancements. This paper delves into the transformative potential of advanced building insulation technologies to curtail CO2 emissions, drawing insights from cutting-edge research published in lead
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Motienko, Anna, and Dmitriy Levonevskiy. "Building the prototype of a smart ward for patient health monitoring." In Fourth International Conference on Digital Technologies, Optics, and Materials Science (DTIEE 2025), edited by Arthur Gibadullin and Khamza Eshankulov. SPIE, 2025. https://doi.org/10.1117/12.3072123.

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M’lahfi, Basma, Mostafa El Qandil, and Driss Amegouz. "Innovative building materials for energy performance in buildings." In International Meeting on Advanced Technologies in Energy and Electrical Engineering. Hamad bin Khalifa University Press (HBKU Press), 2020. http://dx.doi.org/10.5339/qproc.2019.imat3e2018.19.

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Costa, Ana Rute. "A ROADMAP TO ACCELERATE MATERIAL REUSE IN CONSTRUCTION AND USE MATERIALS PASSPORTS." In Sixth International Conference on Sustainable Construction Materials and Technologies. Coventry University, 2024. http://dx.doi.org/10.18552/2024/scmt/402.

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The construction industry is one of the most resource-intensive industries, being responsible for nearly 40% of global energy-related CO2 emissions. In this paper we present a roadmap to implement materials passports and accelerate material reuse in construction, this approach will enable us to reduce embodied carbon expenditure and address Net Zero Targets. The reuse of the whole building should be a priority. The pre-redevelopment and pre-deconstruction audits are essential to inform retain/retrofit design decisions of existing buildings. Deconstruction should be prioritised over demolition.
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Wächter, Christoph. "Ring Resonators: Materials, Technologies, Limits." In MICRORESONATORS AS BUILDING BLOCKS FOR VLSI PHOTONICS: International School of Quantum Electronics, 39th Course. AIP, 2004. http://dx.doi.org/10.1063/1.1764019.

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Stevulova, Nadezda, and Viola Hospodarova. "Cellulose Fibres Used in Building Materials." In Advanced HVAC and Natural Gas Technologies. Riga Technical University, 2015. http://dx.doi.org/10.7250/rehvaconf.2015.031.

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Leonardi, Antonio Alessio, Maria Josè Lo Faro, Dario Morganti, et al. "Silicon nanowires: a building block for future technologies." In Low-Dimensional Materials and Devices 2021, edited by Nobuhiko P. Kobayashi, A. Alec Talin, Albert V. Davydov, and M. Saif Islam. SPIE, 2021. http://dx.doi.org/10.1117/12.2596463.

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Reports on the topic "Technologies of building materials"

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Larbi, Jelian. Building Teamwork: The Synergies of Structural Engineering and Construction Management. American Society of Civil Engineers, 2024. http://dx.doi.org/10.1061/infographic.000018.

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Yu, Guihua. Building Artificial Layered Solids from the Bottom-up: Materials by Design to Enable New Energy Technologies. Office of Scientific and Technical Information (OSTI), 2024. http://dx.doi.org/10.2172/2475935.

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Pasupuleti, Murali Krishna. Sustainable and Affordable Global Housing via AI and Advanced Materials. National Education Services, 2025. https://doi.org/10.62311/nesx/rr425.

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Abstract: The global housing crisis demands innovative solutions that balance affordability, sustainability, and technological advancement. This research report explores the transformative role of Artificial Intelligence (AI) and advanced materials in addressing housing shortages, reducing environmental impact, and improving construction efficiency. AI-driven generative design, smart automation, and predictive analytics optimize resource allocation and enhance structural safety, while advanced materials such as 3D-printed composites, self-healing concrete, aerogels, and bio-based materials rev
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Ali, Saleem, Miriam Aczel, and Kaveh Madani. Building a Global Minerals Trust for a Just Green Transition. United Nations University Institute for Water, Environment and Health (UNU INWEH), 2025. https://doi.org/10.53328/inr25sal004.

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"Today, more than 70% of global production for key critical minerals is concentrated in just a few countries, raising serious concerns about supply security, market volatility, and geopolitical risk. Achieving a just and sustainable energy transition hinges on fair and reliable access to critical minerals—materials key for low-carbon technologies. However, global supply chains remain environmentally damaging and vulnerable to geopolitical tensions, creating systemic risks for both climate and economic goals. • A Global Minerals Trust offers a new multilateral model to promote responsible stewa
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Scarrott, Rory, Cathal O'Mahony, Michael Sweeney, et al. KETmaritime: Setting course to energise maritime uptake of Key Enabling Technologies. University College Cork, 2020. http://dx.doi.org/10.33178/10468.10928.

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Key Enabled Technologies(KETs) have the potential to impact on many aspects of society, whilst transforming European industrial competitiveness at the local, national, and global scales. Studies funded by the European Commission have shown that European advances in six technology areas would not only enhance the leadership and competitiveness of European business, but also drive advances across Europe’s business sectors and society. Despite their applicability across sectors, KETs represent a change, and a new manner of moving forward. Business and society view change both positively, welcomin
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Pfluger, Rainer, and Alexander Rieser, eds. Conservation compatible energy retrofit technologies: Part III - Documentation and assessment of materials and solutions for wall insulation in historic buildings. IEA SHC Task 59, 2021. http://dx.doi.org/10.18777/ieashc-task59-2021-0006.

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Chorna, Olha V., Vita A. Hamaniuk, and Aleksandr D. Uchitel. Use of YouTube on lessons of practical course of German language as the first and second language at the pedagogical university. [б. в.], 2019. http://dx.doi.org/10.31812/123456789/3253.

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Integration of ICT significantly increases the possibilities of the educational process and extends the boundaries of the educational sphere as a whole. Publicly available resources, such as e-mail, blogs, forums, online applications, video hosting sites, can serve as the basis for building open learning and education. Informational educational technologies of learning foreign languages are in the focus of this study. The article represents the results of theoretical analysis of content on the subject of its personal- and didactic-definite orientation, as well as some aspects of the practical
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Ramos, Nuno M. M., Joana Maia, Rita Carvalho Veloso, Andrea Resende Souza, Catarina Dias, and João Ventura. Envelope systems with high solar reflectance by the inclusion of nanoparticles – an overview of the EnReflect Project. Department of the Built Environment, 2023. http://dx.doi.org/10.54337/aau541621982.

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High reflectance materials constitute an attractive idea to reduce cooling loads, which is crucial for attaining the Nearly Zero Energy Buildings goal, also presenting the benefit of broadening the range of colours applicable in building facades. The EnReflect project intended to re-design envelope systems by increasing their solar reflectance through nanotechnology. The main idea was to produce novel nanomaterial-based coatings with high near-infrared (NIR) reflectance by tuning their optical properties and testing their compatibility with typical insulation technologies such as ETICS. As suc
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Pfluger, Rainer, Alexander Rieser, and Daniel Herrera, eds. Conservation compatible energy retrofit technologies: Part I: Introduction to the integrated approach for the identification of conservation compatible retrofit materials and solutions in historic buildings. IEA SHC Task 59, 2021. http://dx.doi.org/10.18777/ieashc-task59-2021-0004.

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According to the United Nations Environment Programme (UNEP), existing European buildings consume about 40% of the total energy consumption in Europe. For this reason, in the last decades, several energy policies have been directed to deep renovation of the existing stock (as last 2018/844). Considering that more than one quarter of all European buildings were constructed before the 1950s, we can assume that many of them are of cultural, architectural, social and heritage values, hence in need of special attention for conservation purposes.
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Johra, Hicham. Performance overview of caloric heat pumps: magnetocaloric, elastocaloric, electrocaloric and barocaloric systems. Department of the Built Environment, Aalborg University, 2022. http://dx.doi.org/10.54337/aau467469997.

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Heat pumps are an excellent solution to supply heating and cooling for indoor space conditioning and domestic hot water production. Conventional heat pumps are typically electrically driven and operate with a vapour-compression thermodynamic cycle of refrigerant fluid to transfer heat from a cold source to a warmer sink. This mature technology is cost-effective and achieves appreciable coefficients of performance (COP). The heat pump market demand is driven up by the urge to improve the energy efficiency of building heating systems coupled with the increase of global cooling needs for air-cond
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