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ŠVEDA, M. SOKOLÁŘ, R.
Originální název
Reducing CO2 Emissions in the Production of Porous Fired Clay Bricks
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
angličtina
Originální abstrakt
A plan to reduce CO2 emissions is a priority these days. Brick industry contributes to the increase of these emissions mainly through the use of combustible pore-forming agents such as sawdust, cellulose, and coal sludge. These agents are used to improve the thermal insulation properties of brick products, and the suppliers regularly increase the prices of these agents based on their high consumption. Therefore, in an effort to reduce raw material expenses and CO2 emissions, brick manufacturers are looking for new possibilities while maintaining the quality of their products. This article discusses the possibility of using industrially manufactured product Vuppor as an additive as a replacement for combustible pore-forming agents. The presence of this additive in the fired clay body increases the proportion of pores, especially with a size range between 0.1 and 5 mu m, having a positive impact on the reduction of its thermal conductivity. With a 0.5 wt.% dose of Vuppor additive, the brick production costs and thermal conductivity can be reduced by 20% and 12%, respectively, while also achieving reductions in CO2 emissions over 60%. Consequently, the combustible pore-forming agents can be used in a more environmentally friendly manner, for example in the furniture industry, the biogas production, and the like.
Klíčová slova
brick; pore-forming agent; thermal conductivity; pore structure; production cost
Autoři
ŠVEDA, M.; SOKOLÁŘ, R.
Vydáno
14. 11. 2017
Nakladatel
KAUNAS UNIV TECH, KAUNAS UNIV TECH MATERIALS SCIENCE, K DONELAICIO G 73, KAUNAS, LT 44029, LITHUANIA
Místo
Kaunas, Lithuania
ISSN
1392-1320
Periodikum
Materials Science
Ročník
23
Číslo
2
Stát
Litevská republika
Strany od
139
Strany do
143
Strany počet
4
BibTex
@article{BUT156302, author="Mikuláš {Šveda} and Radomír {Sokolář}", title="Reducing CO2 Emissions in the Production of Porous Fired Clay Bricks", journal="Materials Science", year="2017", volume="23", number="2", pages="139--143", doi="10.5755/j01.ms.23.2.15103", issn="1392-1320" }