help determine the appropriate storage conditions and
shelf life of the product.
Overall, the results of the drying process indicate
that the system is effective at removing moisture from
the gemitir flowers, with the largest weight loss
occurring on the rack positioned closest to the heat
source. The calculated energy consumption value can
be used to improve the efficiency of the process and
ensure optimal product quality.
4 CONCLUSIONS
In conclusion, the dehumidification system using a
refrigeration system was successful in drying gemitir
flowers, resulting in a weight loss of 85% and an
energy consumption of 4.18 kWh/kg. The system can
be optimized by monitoring weight loss and energy
consumption, allowing for adjustments to be made to
improve efficiency and reduce energy waste.
The results of this study can be used to improve
the overall effectiveness and cost-efficiency of the
drying process for gemitir flowers. With further
optimization, this system could potentially be used on
a larger scale for commercial drying applications.
ACKNOWLEDGEMENTS
I would like to thank PNB's P3M team who have
worked hard to create a reliable research and
community service system. and also thanks to the
Director of the Bali State Polytechnic for funding this
research.
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