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Increasing the microwave power accelerated zerumbone extraction.
Increasing the microwave power setting of MATS system amplified the temperature alteration.
With increasing the microwave treating time from 0 to 20s, the cumulative molar mass curves shifted to lower molecular weight.
The molecular weight (Mw) values of potato starch and the proportion of large MW fraction were considerably reduced with increasing the microwave treating time from 0 to 20s.
The enhancement of specific capacitance with increasing the microwave reaction time is believed to stem from the improved microstructure, as mentioned above.
As shown in Fig. 1e, increasing the microwave power from 400 to 500 W resulted in a gradual increase in extraction yields of zerumbone, followed by a decline with a further increase in liquid-to-solid ratio (beyond 30 mL/g).
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Increase the microwave power levels results in an increase of H2 and decrease of CO2 concentrations in the gaseous products.
We are planning to increase the microwave power to increase the plasma density up to 1017 m−3, making it possible to investigate charge separation at higher density condition.
When the Ni concentration is increased, the microwave return loss is greatly enhanced and the absorption band becomes narrower towards the lower frequency.
With the weight ratio of CI particles in the composite increased, the microwave absorption peak shifted to the lower frequency region.
High values of permittivity and loss tangent also increases the microwave radiation absorption and the ability of the material to convert this electromagnetic radiation into heat.
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