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The phase diagram of the polymer mixture was predicted from the values of X12 and Q12.
Aquatic toxicity data were obtained from regulatory data bases and the toxicity of the mixture was predicted by the concept of concentration addition (P i denotes the relative proportion of the i th component in the mixture).
Using the full cubic model, the optimal formulation of the enzyme mixture was predicted to the percentage of Celluclast™: BCC 199: expansin = 41.4 37.0 21.6, which produced 769 mg reducing sugar/g biomass using 2.82 FPU/g enzymes.
In line with the experimental evidence, homogeneous ignition of the H2/O2 mixture was predicted to occur above 650∘C (though it was retarded by the presence of the surface reaction), while this did not occur for the CO/O2 mixture (only heterogeneously consumed).
Applying the full cubic model, the optimal ratio of quaternary enzyme mixture was predicted to be ACR ARA PET:XYL of 0.171 0.079 0.100 0.150, which showed a glucose releasing efficiency of 0.173 gglc/FPU, higher than the binary ACR XYL mixture (0.122 gglc/FPU) and ACR alone (0.081 gglc/FPU) leading to a 47.3% increase in glucose yield compared with that from ACR at the same cellulase dosage.
Similar(55)
Then, the adsorption amount of H2O in [EMIM][Tf2N] and ZIF-7/ZIF-8 mixture were predicted by the lever rule combining the UNIFAC-Lei model with GCMC simulation.
Densities, excess molar volumes, surface tensions and surface tension deviations of the binary mixture were predicted by Lorenz Lorentz (nD-ρ) mixing rule.
Correlation of the immune response of the components in a mixture is predicted to have an impact on both the overall efficacy of the mixture and on the proportion of people protected by the mixture (Fig. 5a to 5d).
This suggests that, even in the high mixture-dose region, the effects of this mixture are predicted by additivity with a fair degree of accuracy.
The toxicity interaction of the metal mixtures was predicted according to the classical Bliss independence and Loewe additivity models.
Using binary interaction parameters in the mixing rule, the hydrogen solubility in the mixtures was predicted well.
Related(20)
mixture was indicated
mixture was determined
compound was predicted
mixture was estimated
mixture was expected
mixture was predetermined
blend was predicted
mixture was calculated
mixture was directed
mixture was described
material was predicted
mixture was cultured
mixture was strained
mixture was monitored
mixture was set
mixture was poured
mixture was degassed
mixture was sampled
mixture was prepared
mixture was spread
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