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The removal efficiency of COD was studied by O3 and O3/TiO2 processes at optimum pH for the degradation of each process.
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The results demonstrated that NF process at optimum conditions and after chemical pretreatment has an effective efficiency for real textile wastewater treatment.
The process at optimum conditions was kinetically characterized by means of logistic equations, obtaining maximum activities near to 250 U/L and the use of a Luedeking & Piret type model allowed elucidating the metabolic characteristics of the synthesized lipolytic enzymes.
The motive of sustainable manufacturing is to develop manufacturing processes aiming at optimum use of resources without creating environmental pollution in any form, and reduce waste.
In normal conditions the automation system keeps the processes at an optimum.
A maximum reduction in TCOD was 58, 53, 51, and 49%, respectively for UV/H2O2/O3, H2O2/O3, UV/O3 and UV/H2O2 processes at the optimum conditions (initial pH of 7, initial H2O2 concentration of 100 mM, and reaction time of 180 min).
As it can be seen from Fig. 6, experiments were performed in 90 min for the comparative study of different processes at their optimum pH.
The goal was to set the process factors at optimum values to reach the desirable weld bead quality and to increase the production rate.
Aeration was identified as the primary variable affecting the process and at optimum levels; a maximum rhamnose concentration of 3.3 g/l, an emulsification index of 100% and a minimum surface tension of 26.0 mN/m was achieved.
A properly designed control application will consistently operate the process at an optimum set of constraints that represents a combination of physical limitations of the plant equipment and quality specifications on the products.
However, in our study, a kinetic study for degradation of OT in the O3/TiO2 process was performed at optimum pH (pH = 7).
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