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Effect of Physical Properties of the Liquid on the Efficiency of a UV-C Treatment in a Coiled Tube Reactor

In liquid foods, various given physical properties affect simultaneously the inactivation of microorganisms by UV-C treatment. Here, the effect of absorption, turbidity and viscosity on the efficiency of UV-C inactivation in a coiled tube reactor was investigated. Model solutions with E. coli DH5α as biodosimeter were chosen. The Weibull fit was suitable to describe the inactivation behavior of E. coli DH5α in the liquids. Regarding the physical parameters, the absorption was identified as the main parameter affecting the inactivation performance. A considerably lower 5D value was observed for the inactivation kinetic at the highest concentration of cellulose particles compared to the absorptive liquids, indicating a minor effect of turbidity on the reduction rate. However, an underperformance of mixing caused by the high viscosity of 10 mPas was observed in absorptive liquids (40 cm- 1). In addition, the inactivation behavior of E. coli DH5α in juices was compared to the reduction in corresponding model juice. It was shown, that inactivation kinetics in model juice can provide first indications for the inactivation behavior of microorganisms in real juices.

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