Sustainable insulating porous building materials for energy-saving perspective: Stones to environmentally friendly bricks

2022 ◽  
Vol 318 ◽  
pp. 125930
Author(s):  
Farah Anjum ◽  
Muhammad Yasin Naz ◽  
Abdul Ghaffar ◽  
Kashif Kamran ◽  
Shazia Shukrullah ◽  
...  
2022 ◽  
Vol 2152 (1) ◽  
pp. 012042
Author(s):  
Lan Kou

Abstract On the road to sustainable development, the concepts of energy saving and environmental protection are deeply rooted in people’s hearts, and their technology has penetrated into all aspects of life. Like the construction industry, with the advancement of environmental protection and energy-saving technologies, the prospects for development will also be huge. Many materials used in construction projects can cause pollution. Although environmental protection technology is supported, its technology cannot remain unchanged. Technical researchers must reduce the risks of materials and continue to innovate and develop environmentally friendly technologies. Only in this way can we continue to make progress, ensure that we have a high-quality construction project, and ensure that energy conservation is consistent with social development. Therefore, to use the qualified construction methods adopted for the renovation project, you can use what you have now and ensure its ecological and human safety. Reduce material costs and reduce environmental pollution caused by indoor raw materials. As a basic framework, it combines the definitions of modern environmental protection and energy-saving technologies, and effectively applies environmental protection and energy efficiency technologies. Decoration and decoration of energy-efficient buildings. Adopt environmental protection technology, rationally use various energy-saving and environmental-friendly materials, and raise awareness of energy conservation and environmental protection. In addition, in-depth discussion and analysis of energy-saving management of building materials and equipment are also conducted. The goal is to improve the awareness of energy conservation and environmental protection in building decoration projects and lay a solid foundation for creating an environmentally friendly and energy-saving living environment. Experimental research results show that people do not know enough about the application of environmental protection and energy-saving technologies in building decoration projects. Therefore, we must increase publicity to let people know better, and we must also increase efforts to innovate in order to better implement and apply. People and regions have better development.


2021 ◽  
Vol 233 ◽  
pp. 03064
Author(s):  
Li sheng Chen ◽  
Yudi Ding ◽  
Lei Chen

With the rapid development of urban construction, the state and society gradually realize the significance of environmental protection and put forward higher requirements for the specific construction of the building industry. In this paper, it summarizes and sorts out the environmentally-friendly and energy-saving materials through analyzing and comparing common building materials on the market. During building decoration, make full use of energy-saving and environmentally-friendly building materials to promote their wide application in the construction industry.


2014 ◽  
Vol 919-921 ◽  
pp. 1962-1966
Author(s):  
Yan Xia

Foam concrete is a new kind of energy-saving and environmentally friendly building materials. The main features of foam concrete are lightweight,thermal insulation performance,sound proof performance,waterproof performance,environmental performance,etc;Study the principle of the preparation of foam concrete and the preparation process;Overview the research progress of application at home and abroad;The problems of the application on foam concrete and the prospect are shown.


2015 ◽  
Vol 824 ◽  
pp. 127-132
Author(s):  
Iñigo Antepara ◽  
Igor Medveď ◽  
Jaromír Žumár ◽  
Robert Černý

Salts and water may cause serious damage to historical masonries. Therefore, numerous conservation treatments have been developed by research teams for the consolidation and protection of porous building materials affected by salt attack. Here the focus is on methods for obtaining an effective desalination of historical masonry, indicating their advantages and disadvantages. It is pointed out that cellulose is a favourite material added to poultices used in desalination.


2012 ◽  
Vol 193-194 ◽  
pp. 406-410 ◽  
Author(s):  
Ai Fang Liu ◽  
Shu Rong Guo

Currently, energy saving and consumption reduction has been a crucial task the domestic people are facing with. It has been considered as essential question in the field of building materials to research and develop a new energy saving building material. In this paper, we classified new wall material and thermal insulation material, analyzed the performance, feature and application of such materials, selected typical foam concrete and slurry insulation material and analyzed their thermal properties and technology parameters and so on, to present the development trend and direction of energy saving building material, to provide valid scientific data to relevant building energy saving management units, design units and construction units, to play a positive guiding role in improving the application level of new energy saving building material and promoting new energy saving building material of high quality.


2011 ◽  
Vol 45 (1-2) ◽  
pp. 297-308 ◽  
Author(s):  
Kashif Kamran ◽  
Leo Pel ◽  
Alison Sawdy ◽  
Henk Huinink ◽  
Klaas Kopinga

2013 ◽  
Vol 2013 ◽  
pp. 1-6 ◽  
Author(s):  
Ranjit K. Nath ◽  
M. F. M. Zain ◽  
Abdul Amir H. Kadhum

The addition of a photocatalyst to ordinary building materials such as concrete creates environmentally friendly materials by which air pollution or pollution of the surface can be diminished. The use of LiNbO3photocatalyst in concrete material would be more beneficial since it can produce artificial photosynthesis in concrete. In these research photoassisted solid-gas phases reduction of carbon dioxide (artificial photosynthesis) was performed using a photocatalyst, LiNbO3, coated on concrete surface under illumination of UV-visible or sunlight and showed that LiNbO3achieved high conversion of CO2into products despite the low levels of band-gap light available. The high reaction efficiency of LiNbO3is explained by its strong remnant polarization (70 µC/cm2), allowing a longer lifetime of photoinduced carriers as well as an alternative reaction pathway. Due to the ease of usage and good photocatalytic efficiency, the research work done showed its potential application in pollution prevention.


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