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Geopolymers are sustainable alternative to the ordinary cements because of no CO2 emissions during manufacture and use. They show better compressive strength comparable to Portland cements, high temperature resistance, and stability under acid attack. The dynamic situations prevailing in geopolymer reactions in commercial samples is explained taking help of both correlation coefficients and multiple linear regression analysis and four experimental samples is experimented upon to indicate the validity of the assumptions and scientific observations in real time dynamic conditions. Hope in future…mehr

Produktbeschreibung
Geopolymers are sustainable alternative to the ordinary cements because of no CO2 emissions during manufacture and use. They show better compressive strength comparable to Portland cements, high temperature resistance, and stability under acid attack. The dynamic situations prevailing in geopolymer reactions in commercial samples is explained taking help of both correlation coefficients and multiple linear regression analysis and four experimental samples is experimented upon to indicate the validity of the assumptions and scientific observations in real time dynamic conditions. Hope in future scientific communities working on this area will be benefited on application of this methodology in their experimental samples.
Autorenporträt
Dr. P. Das - Material scientist, worked in R&D Division of Steel Authority of India, is presently with ACS College of Engineering, Bangalore, India.Dr. T. Koumoto - Professor Emeritus of Saga University, Japan.Dr. P. P. Pujar - Main research interests are Organic synthesis and natural products chemistry.Dr. A. Roy is a Mathematician.