会议论文详细信息
21st International Scientific Conference on Advanced in Civil Engineering "Construction - The Formation of Living Environment"
Wastewater sludge disposal in the claydite construction product
土木建筑工程
Koroleva, Ekaterina^1 ; Bazhenov, Victor^2
Moscow State University of Civil Engineering, Yaroslavskoe shosse, 26, Moscow
129337, Russia^1
Closed Joint Stock Company Water and Waste Water, 1, Polkovaya street, Moscow
127018, Russia^2
关键词: Clay raw materials;    Construction products;    Environmental concerns;    Excess activated sludges;    Mechanical treatments;    Municipal wastewater sludge;    Traditional values;    Wastewater treatment plants;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/365/2/022069/pdf
DOI  :  10.1088/1757-899X/365/2/022069
学科分类:土木及结构工程学
来源: IOP
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【 摘 要 】

In environmental concern this paper relates to waste management, that is becoming a global challenge. The raw base municipal wastewater sludge (WSS) is submitted by crude types: excess activated sludge (EAS), deposit allocated precipitation at mechanical treatment stage, or also dehydrated mixture of the listed kinds of deposits. Claydite is an effective and rather popular material in the construction industry. The choice of sub-standard clay raw material of an overburden bench of Kalinovo- Dashkovskiy deposit, closely to the city of Serpukhov is provided by a location of opencast on close distance from wastewater treatment plant. As the additive to the specified raw material was chosen small-dispersed WWS with sludge from surface storm drains (SSD), which is poorly investigated. This allowed to specified traditional technology and to improve production light porous claydite, ecologically pure product. Claydite application is possible in production of light concrete on porous aggregate (filler) of the marks up to 600-700 with reduced thermal conductivity up to 0.175 W/m°C. Such a claydite-concrete manages to be received specially working with granulometry of aggregate, utilizing claydite-sand or wastage of dust-ablation. The design for real conditions with productivity 135 thousand M 3/year showed the economical substantiation of mentioned claydite production based the identification of power reduction on 25.8% and specific fuel reduction on 25.7 - 38.0% in comparison with traditional values of claydite production.

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