“Alkaline Activation” as a procedure for the transformation of fly ashes into cementitious materials – Part I. Fundamentals
“Alkaline Activation” as a procedure for the transformation of fly ashes into cementitious materials – Part II. Immobilisation of toxic and hazardous elements
“Alkaline Activation” as a procedure for the transformation of fly ashes into cementitious materials – Part III. Reducing the clinker content
“Alkaline Activation” as a procedure for the transformation of fly ashes into cementitious materials – Part IV. Other applications
Effect of sintering conditions on the production of ceramics from lignite fly and bottom ashes
Improvement of Portland cement free cementitious material
The Effect of Aqueous Solutions Treatments on Coal Fly Ash Surface and Its Interactions with Trace Elements
Modification of surface properties of South African coal fly ash for industrial filler applications
Extraction of Alumina from Coal Fly Ash Generated from Inner-Mongolia Chinese Coal
Pressure infiltration technique for the synthesis of A356 Al/high-Ca fly ash composites
Alumina-rich Glass Cement from Lignite Coal Ash
The effect of sintering processes of lignite calcareous ashes on the production of ceramics
Development of ferrocement matrix by using calcareous fly ash and ladle furnace slag as pozzolanic admixtures
CO2 optimized cement based on synthetic slag made of fly ash
Bituminous Coal Fly Ash as a Potential Scrubber Reagent for Low Activity Radioactive Wastes
Fly-ashes from fluid combustion as an alternative binder for cold recycling and stabilized base courses in pavement structures
Use of High Volume Calcareous Fly Ash for the Production of a Hydraulic Binder for Road Pavements
Use of calcareous fly ash for improvement of mechanical and physical characteristics of soils
Durability Properties of High Performance Fiber Reinforced Cementitious Composites Incorporating High Volumes of Fly Ash