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- W3083485756 abstract "In a previous paper, we established a test routine and found in cuboid gellan test samples containing Maillard reactive agents that the solid-state system yields a more uniform heating profile. This was attributed to a more uniform microwave energy distribution profile in the solid-state oven cavity. In this work, we aim at determining the heating profile in various test sample shapes exposed to classical magnetron and innovative solid-state microwave systems. Therefore, we assessed the uniformity of heat processing between both solid-state and magnetron microwave generators using other test sample shapes of spherical and cylindrical forms and compare the results with the test samples with cuboid shape. The comparison confirms that the solid-state microwave system also results in more uniform heating of the cylindrical test samples like in the cuboid test sample, while the spherically-shaped test sample this was not the case. The explanation most likely is that the focus of microwave energy in the center of the spherical sample is more dominating such that the external microwave energy distribution is less decisive for a uniform heating profile. In other words, the possibility of distinguishing the differences between the solid-state and magnetron microwave generators and comparing the uniformity of their thermal processing requires a certain sample shape. Spherical samples are less suitable, because of the focusing of energy towards the sample center and difference between the systems can be determined much less sensitively compared to other shapes. These results contribute to understand microwave heating systems better and provide guidance in product development in terms of shapes most suitable to achieve heating profiles with reduced issues related to hot/cold spots in the product." @default.
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- W3083485756 date "2020-11-01" @default.
- W3083485756 modified "2023-10-11" @default.
- W3083485756 title "Assessment of uniformity of microwave-based heating profiles generated by solid-state and magnetron systems using various shapes of test samples" @default.
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- W3083485756 doi "https://doi.org/10.1016/j.fbp.2020.08.013" @default.
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