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The design spaces of last two steps of reduction reaction were established.
The effects of reaction conditions on the grafting parameters (such as initiator, monomer, and pullulan concentrations, reaction time and temperature) were investigated, and the optimal conditions for the grafting reaction were established.
Using a Central Composite Rotatable Design the optimum pH and temperature for free and PECp-lipase reaction were established at pH 8.0, 30 40 °C, and pH 8.0, 40 50 °C, respectively.
The kinetics and mechanism of the thermal decomposition reaction were established using iso-conversional calculation procedure.
Thus, optimal conditions for the coupling reaction were established at 50°C and 15 min. Open image in new window Figure 2 Optimization of coupling reaction temperature.
The optimal reaction conditions for the catalytic enantioselective cycloaddition reaction were established through an elaborate optimization process and once again, the Cu(I /(R -Fesulphos catalytic system gave the best enantioselectivity (Scheme 19).
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Based on these results, an exponential rate expression of the Bunsen reaction was established.
Thus a chain reaction is established that leads to a reduction in molecular size, or "cracking," of components of the original feedstock.
The criticality boundaries with different degrees of reaction are established as a function of the ambient temperature.
The irreversibility of the electrodic reaction is established and the kinetic parameters of the process are calculated.
An alternative metal-free CEAOP independent of Fenton reaction was established based on ERGO-modified GDE for POPs removal from wastewater under mild conditions.
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