The influence of different additions on portland cement hydration heat
Journal Article
·
· Cement and Concrete Research; (United States)
- Inst. Eduardo Torroja, Madrid (Spain)
This paper presents the results obtained using the Langavant Calorimeter method on portland cements with different addition materials that are commonly used in the manufacture of commercial cements. The effects of these materials on the hydration heat with respect to a control cement were studied. The first hours show that most of the additions, which present higher activity at early stages, increase the hydration heat of their mixed cements in relation to the control cement. The use of pozzolans reduces the heat given off by the cements during hydration. However, the reactions of the pozzolanic materials with the lime also produce heat and the decrease should not be proportional to the level of clinker substitution in the mixed cements.
- OSTI ID:
- 6300926
- Journal Information:
- Cement and Concrete Research; (United States), Journal Name: Cement and Concrete Research; (United States) Vol. 23:1; ISSN 0008-8846; ISSN CCNRAI
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
01 COAL, LIGNITE, AND PEAT
010800* -- Coal
Lignite
& Peat-- Waste Management
37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
400201 -- Chemical & Physicochemical Properties
ADDITIVES
AEROSOL WASTES
ALKALINE EARTH METAL COMPOUNDS
ASHES
BUILDING MATERIALS
CALCIUM COMPOUNDS
CALCIUM OXIDES
CALORIMETRY
CATALYTIC EFFECTS
CEMENTS
CHALCOGENIDES
COMBUSTION PRODUCTS
ENTHALPY
FLY ASH
HYDRATION
MATERIALS
OXIDES
OXYGEN COMPOUNDS
PHYSICAL PROPERTIES
PORTLAND CEMENT
REACTION HEAT
RESIDUES
SLAGS
SOLVATION
THERMODYNAMIC PROPERTIES
WASTE PRODUCT UTILIZATION
WASTES
010800* -- Coal
Lignite
& Peat-- Waste Management
37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
400201 -- Chemical & Physicochemical Properties
ADDITIVES
AEROSOL WASTES
ALKALINE EARTH METAL COMPOUNDS
ASHES
BUILDING MATERIALS
CALCIUM COMPOUNDS
CALCIUM OXIDES
CALORIMETRY
CATALYTIC EFFECTS
CEMENTS
CHALCOGENIDES
COMBUSTION PRODUCTS
ENTHALPY
FLY ASH
HYDRATION
MATERIALS
OXIDES
OXYGEN COMPOUNDS
PHYSICAL PROPERTIES
PORTLAND CEMENT
REACTION HEAT
RESIDUES
SLAGS
SOLVATION
THERMODYNAMIC PROPERTIES
WASTE PRODUCT UTILIZATION
WASTES