Modeling the effect of a superabsorbent polymer material as desiccant in maize drying using CFD

F Román, DO Mbuge, O Hensel - Drying technology, 2019 - Taylor & Francis
F Román, DO Mbuge, O Hensel
Drying technology, 2019Taylor & Francis
Maize is an important foodstuff in many countries, and one of most susceptible crops to mold
and aflatoxin contamination, which results in considerable postharvest losses and is a
burden to consumers' health, especially in developing countries. The timely drying of
harvested maize is essential to halt mold development, ensuring safe storage. The effect of
the incorporation of a superabsorbent polymer (SAP) as desiccant in a maize dryer was
studied using computational fluid dynamics simulations which accounted for heat and mass …
Abstract
Maize is an important foodstuff in many countries, and one of most susceptible crops to mold and aflatoxin contamination, which results in considerable postharvest losses and is a burden to consumers’ health, especially in developing countries. The timely drying of harvested maize is essential to halt mold development, ensuring safe storage. The effect of the incorporation of a superabsorbent polymer (SAP) as desiccant in a maize dryer was studied using computational fluid dynamics simulations which accounted for heat and mass transfer between maize, SAP and air. The adsorption capacity and adsorption rate of a commercial SAP material were experimentally determined at different temperature and relative humidity levels, which served as basis for the adsorption model required in the simulations. A maize bulk with SAP packages distributed in it was modeled. Results showed that the SAP material increases the drying rate substantially, particularly in the upper bulk zone where the air reaching it is dehumidified the most. The maize closer to the upper bulk surface starts drying from the beginning of the process instead of lagging for hours or days before the drying front reaches it. An inconvenience of the SAP material is the tendency of granules to swell and stick together as moisture reaches a threshold, which may reduce its performance. Thus, provided this issue is resolved or minimized, SAP materials could successfully assist the rapid drying of maize and other crops. They may also be used during storage to avoid rewetting of the crops during periods of high relative humidity.
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