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As an average, 71.90 % of cellulose conversion was attained of ECS.
Under optimal conditions, full conversion was attained at a reaction time of 10 h.
Polymers of low molecular weight were obtained after 100 h of reaction and 30% conversion was attained.
In high temperature water, 50% conversion was attained at 430 °C by adding the basic compound although perfect solubilization could not be attained.
The NO conversion on the Ba/CeMn catalyst increased with increasing reaction temperature, and 67% of NO conversion was attained at 800 °C.
Six immobilized lipases were tested and the best oleic acid conversion was attained with Novozym 435 from Candida antarctica which was selected to optimize the reaction conditions by response surface methodology (RS M.
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Temperature is the crucial parameter as limited conversion is observed below 180 °C and optimum conversion is attained around 220 °C.
In the case of SSF, 50.4 g L−1 of ethanol concentration and 92.2% of ethanol conversion were attained, demonstrating an improved fermentation performance in industrial lignocellulose fermentations.
Illustrations of the simulation are presented along with results which indicate that a maximum conversion is attained and that the reactivity of the pendant functional group varies greatly over the course of the reaction due to the heterogeneity that appears during the polymerization.
Further, the reaction of CO with H2S was found to be rapid and equilibrium COS conversions were attained in less than 700 ms at temperatures greater than 1000°C.
The best condition yielded 74% of the theoretical conversion and was attained at the height of severity (CSF of 2.48).
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