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Regression equations for predicting the optimum yields of vanadium carbide have been proposed.
The optimum yields of 96.2% and 91.4% were obtained for heptane and hexane at the optimum temperature of 53.9 °C, impeller speeds of 309.5 and 309.0 rpm, enzyme amounts of 4.82 and 5.65 g and substrate molar ratios of 2.94 and 3.39 1, respectively.
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They reported that application of these organic fertilizer materials at 6 t/ha was the best critical level for optimum yield of crop in the study area.
The result shown in Figure 2 confirmed that low amount of oxygen was required by E. aerogenes S012 for optimum yield of ethanol from glycerol.
The design model estimated the optimum yield of 6.81677% at 200 W microwave power level, 3 1 water to plant material ratio and 20 min of irradiation time.
Important variables such as reaction time, reaction temperature and molar ratio of alcohol to oil were optimized in order to obtain the optimum yield of biodiesel.
An optimum yield of 96% was achieved with optimal conditions of methanol/oil molar ratio, 6 1; temperature, 55 °C; time, 60 min; and catalyst concentration, 0.6%.
It is observed that the temperature is the most significant parameter and the optimum yield of bio-oil is around 82%.
The results showed that the optimum yield of biodiesel was 93.8% with viscosity 5.60 cSt, with a methanol-to-oil molar ratio of 4 1, catalyst concentration of 1.5 wt%, reaction time of 90 min and reaction temperature of 60 °C.
Optimum yield of 49.90 % was predicted at extraction temperature of 60 °C, extraction time of 60 min, seed particle size of 150 µm and 150 ml volume of solvent, for the process.
The optimum yield of levulinic acid was 262.4 mg/g dried corncob, and was obtained at temperature of 200 °C, reaction time of 60 min, and zeolite to acid ratio of 1 15.
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