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Sustainable Construction Materials: Sustainable Construction Materials

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foam composite; active carbon; micropore volume; specific surface area; pore structure; compressive strength; flexural strength; drying shrinkage; amorphous metallic fiber; carbonation; mortar; crack healing; clinker binder and aggregate; flexural performance; water flow test; curing; Portland cement; limestone; metakaolin; carbonation curing; CO2 uptake; LC3; hydration reaction; nuclear magnetic resonance; thermogravimetry; ultra-high-performance concrete; X-ray diffraction; calcium silicate hydrate; photocatalysis; titanium dioxide nanotube; anatase TiO2; hydration products; cement paste; fine aggregate; bottom ash; GGBFS; cold-bonded pelletization; heavy metal leaching; strengthening methods; fiber reinforced polymer; no-slump; high-strength; ductility concrete; low-velocity impact load; two-way slab; superabsorbent polymer; belite-rich Portland cement; sustainable ultra-high-performance paste; internal curing; autogenous shrinkage; sustainable concrete; wastewater; industrial waste management; sustainable development; sustainable construction materials; circular economy; recycling; materials design; construction materials; materials properties; Rhodobacter capsulatus; sewage concrete; surface coating; sulfate ion; service life; cover depth; architectural injection grout; dry hydrated lime; particle density; workability; porosity; mechanical properties; ISO22197-1; titanium dioxide (TiO2); nitrogen oxides (NOx); embodied carbon; recycled asphalt; recycled aggregate; construction waste materials; alternative additives; alternative water resources; durability; residues; carbon dioxide; pollution; pozzolanic activity; UHPC; thermodynamic modeling; phase assemblage; alternative cementitious binders; supplementary cementitious materials; CaO-activation; auxiliary activator; chemical resistance; freezing; thawing; self-healing of cracks; concrete; constitutive relations; damage mechanics; finite element analysis; cement composite; filler effect; microstructure; nano-silica; silica fume; fine recycled aggregate; construction and demolition waste; recycled concrete aggregate; recycled masonry aggregate; recycled aggregate concrete; alkali-activated materials; setting time; ultrasonic measurements; calorimetry; strength

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libros

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Suiza