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The morphologies of 3D nanostructure can be controlled by adjusting the raw material ratio of pyrrole to GO.
Nine concrete mixtures were designed to have the same degree of workability and air content with water/cementitious material ratio of 0.4.
The optimum extraction parameters predicted were 93% ethanol concentration, for 4.3 h at 43 °C and a solvent to raw material ratio of 1/66.
Then, the optimal parameters of MSCE were obtained by using single-factor experiments and Box Behnken design (BBD) as follows: extraction temperature of 46.6 °C, CaO to raw material ratio of 6 100, water to raw material ratio of 8.8 1 and extraction time of 51.7 min.
Limestone rock fine and coarse aggregates were mixed in the concrete with a water/cementitious material ratio of 0.33 for early adequate strength.
The maximum hydrocolloid extraction yield (9.501 ± 0.15%) was achieved by using extraction time of 4.94 h, extraction temperature of 94.91 °C and water to raw material ratio of 21.74 ml/g.
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The design strength level of 75 100 MPa was achieved using water-cementitious material ratios of 0.22, 0.26 and 0.31.
Water-to-cementitious (w/cm) material ratios of 0.25 and 0.35 were used in production of concrete.
The ratio of reactants needs to be controlled, so silylation was conducted at different material ratios of electroreduction product, DMF, and HMDS.
Mortar mixtures were prepared with a water-to-cementitious materials ratio of 0.60 and a cementitious/sand ratio of 1 3.5.
Impact of NWPA on performance of mortar with water to cementitious materials ratio of 0.3 was presented in this paper.
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