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Ultra-low carbon geopolymer cement, cement mortar and preparation method thereof
The invention belongs to the field of solid waste resource utilization, and particularly relates to ultra-low carbon geopolymer cement and a preparation method thereof, and the ultra-low carbon geopolymer cement comprises the following raw materials by weight: 6-8 parts of aluminosilicate solid waste; 0.5-1 part of organic solid waste; 2-4 parts of alkali-rich solid waste; cement mortar is prepared from the ultra-low carbon geopolymer cement, and the water-cement ratio is controlled to be 0.5; the ultra-low carbon geopolymer cement further comprises machine-made sand, and the mixing amount of the machine-made sand is three times that of the ultra-low carbon geopolymer cement. The research result of the project can provide a new thought for the application of synergistically preparing the ultra-low carbon geopolymer cement from the multi-industry solid wastes, and is beneficial to reducing the carbon emission of the cement industry, promoting the development of related industries and accelerating and promoting the efficient resource utilization of the multi-industry solid wastes.
本发明属于固废资源化利用领域,尤其涉及公开一种超低碳地质聚合物水泥及其制备方法,包括以下原料的重量份组成:硅铝酸盐固废6~8份;有机固废0.5~1份;富碱固废为2~4份;采用上述超低碳地质聚合物水泥制备水泥砂浆、水灰比控制在0.5;还包括机制砂,所述机制砂的掺量为所述超低碳地质聚合物水泥的3倍。本项目的研究成果可为多行业固废协同制备超低碳地质聚合物水泥的应用提供新的思路,有助于降低水泥行业碳排放,促进相关产业发展,加快推进多行业固废资源化高效利用。
Ultra-low carbon geopolymer cement, cement mortar and preparation method thereof
The invention belongs to the field of solid waste resource utilization, and particularly relates to ultra-low carbon geopolymer cement and a preparation method thereof, and the ultra-low carbon geopolymer cement comprises the following raw materials by weight: 6-8 parts of aluminosilicate solid waste; 0.5-1 part of organic solid waste; 2-4 parts of alkali-rich solid waste; cement mortar is prepared from the ultra-low carbon geopolymer cement, and the water-cement ratio is controlled to be 0.5; the ultra-low carbon geopolymer cement further comprises machine-made sand, and the mixing amount of the machine-made sand is three times that of the ultra-low carbon geopolymer cement. The research result of the project can provide a new thought for the application of synergistically preparing the ultra-low carbon geopolymer cement from the multi-industry solid wastes, and is beneficial to reducing the carbon emission of the cement industry, promoting the development of related industries and accelerating and promoting the efficient resource utilization of the multi-industry solid wastes.
本发明属于固废资源化利用领域,尤其涉及公开一种超低碳地质聚合物水泥及其制备方法,包括以下原料的重量份组成:硅铝酸盐固废6~8份;有机固废0.5~1份;富碱固废为2~4份;采用上述超低碳地质聚合物水泥制备水泥砂浆、水灰比控制在0.5;还包括机制砂,所述机制砂的掺量为所述超低碳地质聚合物水泥的3倍。本项目的研究成果可为多行业固废协同制备超低碳地质聚合物水泥的应用提供新的思路,有助于降低水泥行业碳排放,促进相关产业发展,加快推进多行业固废资源化高效利用。
Ultra-low carbon geopolymer cement, cement mortar and preparation method thereof
一种超低碳地质聚合物水泥、水泥砂浆及其制备方法
MUNEE (Autor:in) / LIU XIAOFAN (Autor:in) / ZHANG JINQIU (Autor:in) / CHEN LEI (Autor:in) / XIE FANGCHEN (Autor:in) / RAN MAOLUN (Autor:in) / ZHANG LI (Autor:in) / XU LING (Autor:in) / WANG CHANGLIN (Autor:in) / LIAO JIAHAN (Autor:in)
13.08.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
C04B
Kalk
,
LIME
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