Dry Mix Slag—High-Calcium Fly Ash Binder. Part One: Hydration and Mechanical Properties  

Dry Mix Slag—High-Calcium Fly Ash Binder. Part One: Hydration and Mechanical Properties

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作  者:Alexey Brykov Mikhail Voronkov Alexey Brykov;Mikhail Voronkov(Department of Chemical Technology of High-Melting Non-Metallic and Silicate Materials, Saint Petersburg State Institute of Technology, Saint Petersburg, Russia)

机构地区:[1]Department of Chemical Technology of High-Melting Non-Metallic and Silicate Materials, Saint Petersburg State Institute of Technology, Saint Petersburg, Russia

出  处:《Materials Sciences and Applications》2023年第3期240-254,共15页材料科学与应用期刊(英文)

摘  要:High-calcium fly ash (HCFA)—a residue of high-temperature coal combustion at thermal power plants, in combination with sodium carbonate presents an effective hardening activator of ground granulated blast-furnace slag (GGBFS). Substitution of 10% - 30% of GGBFS by HCFA and premixing of 1% - 3% Na2CO3 to this dry binary binder was discovered to give mortar compression strength of 10 - 30 to 30 - 45 MPa at 7 and 28 days when moist cured at ambient temperature. High-calcium fly ash produced from low-temperature combustion of fuel, like in circulating fluidized bed technology, reacts with water readily and is itself a good hardening activator for GGBFS, so introduction of Na<sub>2</sub>CO<sub>3</sub> into such mix has no noticeable effect on the mortar strength. However, low-temperature HCFA has higher water demand, and the strength of mortar is compromised by this factor. As of today, our research is still ongoing, and we expect to publish more data on different aspects of durability of proposed GGBFS-HCFA binder later.High-calcium fly ash (HCFA)—a residue of high-temperature coal combustion at thermal power plants, in combination with sodium carbonate presents an effective hardening activator of ground granulated blast-furnace slag (GGBFS). Substitution of 10% - 30% of GGBFS by HCFA and premixing of 1% - 3% Na2CO3 to this dry binary binder was discovered to give mortar compression strength of 10 - 30 to 30 - 45 MPa at 7 and 28 days when moist cured at ambient temperature. High-calcium fly ash produced from low-temperature combustion of fuel, like in circulating fluidized bed technology, reacts with water readily and is itself a good hardening activator for GGBFS, so introduction of Na<sub>2</sub>CO<sub>3</sub> into such mix has no noticeable effect on the mortar strength. However, low-temperature HCFA has higher water demand, and the strength of mortar is compromised by this factor. As of today, our research is still ongoing, and we expect to publish more data on different aspects of durability of proposed GGBFS-HCFA binder later.

关 键 词:Ground Granulated Blast-Furnace Slag Blast-Furnace Slag Activation High-Calcium Fly-Ash Sodium Carbonate Blast-Furnace Slag Binder 

分 类 号:TG1[金属学及工艺—金属学]

 

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