This review provided insight into which of the existing PWT systems performed best, and offered explanations for which process parameters contributed to higher treatment efficiencies. While there is much value in knowing which of the existing process parameters are most effective, it does not provide assistance to the development of new reactor designs. The present study investigates how selected reactor design parameters affect removal efficiency of Rhodamine B (RhB) dye, and uses the resulting relationships to originate a more universal guideline for developing new reactors. In addition to providing insights into the fundamental nature of the overall mechanism responsible for organic solute degradation, this guideline is employed, to considerable benefit,
for the development of several novel reactor types.
This review provided insight into which of the existing PWT systems performed best, and offered explanations for which process parameters contributed to higher treatment efficiencies. While there is much value in knowing which of the existing process parameters are most effective, it does not provide assistance to the development of new reactor designs. The present study investigates how selected reactor design parameters affect removal efficiency of Rhodamine B (RhB) dye, and uses the resulting relationships to originate a more universal guideline for developing new reactors. In addition to providing insights into the fundamental nature of the overall mechanism responsible for organic solute degradation, this guideline is employed, to considerable benefit,for the development of several novel reactor types.
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