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The objective of our optimization was to identify the reaction parameters for the synthesis of nearly monodisperse (σ = 5-10%) samples of a given mean size while simultaneously maximizing the reaction yield.
To improve the economics of the process, attention is now focused on optimizing the energy efficiency of the process, maximizing the reaction rate, and improving the recovery of the glycerol by-product.
Results showed that the strategy adopted for the experimental design proved to be useful in maximizing the reaction conversion in 2-propanol as solvent with Novozym 435 as catalyst.
In this paper, we address the fundamental problem of maximizing the reaction rate of a channel reactor with catalyst on its boundaries by varying its aspect ratio L/H.
Reaction conditions were optimized and the donor substrate selected for maximizing the reaction yield and productivity of the enzymatic synthesis of hexyl-β-galactoside with β-galactosidase from Aspergillus oryzae.
We address two aspects of general interest for the chemical synthesis of colloidal semiconductor nanocrystals: (1) the rational design of the synthesis protocol aiming at the optimization of the reaction parameters in a minimum number of experiments; (2) the transfer of the procedure to the gram scale, while maintaining a low size distribution and maximizing the reaction yield.
Similar(54)
It was made of quartz to maximize the reaction efficiency.
A Model Predictive Controller is proposed to maximize the reaction yield under hard input and state constraints.
Electrochemical and physico-chemical data indicated that a proper balance of Pt and Sn species in the near surface region was necessary to maximize the reaction rate.
Then the process design and operation are studied through steady state analysis, together with an optimization problem that maximizes the reaction rates of the sugar production and of lignin elimination.
When the radioactivity in the vial had maximized, the reaction mixture was sealed and heated at 80 °C for 5 min and then diluted with water.
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