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Journal

High calcium fly ash generated at pulverized solid fuel combustion at thermal power plants in combination with sodium carbonate is an effective dry ac...
Issue №1, 2022
Section: Science and production
Keywords: granulated blast-furnace slag, blast-furnace slag activation, high-calcium fly-ash, sodium carbonate
Autor: A.S. Brykov, M.E. Voronkov.
The potential of obtaining and using concrete on the basis of slag Portland cement (SPC) for road and airfield pavements has been evaluated. U...
Issue №2, 2019
Section: Concrete
Keywords: pavement, aerodrome pavement, rigid pavement, pavement concrete, cement concrete, ground granulated blast-furnace slag, Portland blastfurnace slag cement, freeze—thaw resistance of concrete, high performance concrete
Autor: I.M. Ivanov, L.Y. Kramar, A.A. Kirsanova.
The effect of additives obtained by grinding granulated slag on hydration and early compressive strength of slag Portland cement was examined. Grindin...
Issue №5, 2016
Section: Science and production
Keywords: portland blast-furnace slag cement, granulated blast furnace slag, additive, sodium aluminate, grinding, hydration, strength
Autor: D. Zimmer, K. Droll, M. Paul.
As hydration of pure cement pastes proceeds, unhydrated cement particles hydrolyse, hydration products are formed and the degree of hydration continuo...
Issue №1, 2012
Section: Science and production
Keywords: blast-furnace slag, Portland cement, hydration, electron microscopy, thermogravimetry
Autor: E. Gruyaert, N. De Belie.
The potential of slag Portland cement with high (50%) content of granulated blast furnace slag to prevent negative consequences for the qu...
Issue №3, 2011
Section: Concrete
Keywords: concrete corrosion, slag Portland cement, blast-furnace slag
Autor: G.S. Royak, I.V. Granovskaya.
The effect of storage of granulated blast furnace slag (BFS) on the properties of slag Portland cement produced with it was examined. Accordin...
Issue №6, 2013
Section: Waste utilization
Keywords: portland blast-furnace slag cement, blast furnace slag, grain-size distribution, reactivity
Autor: A. Ehrenberg.

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