Nevertheless, the physical
phenomenon behind flavanone extraction with different solvents
and their distribution in a miscible solvent mixture after centrifugation has not been investigated. Furthermore, variations in flavanone
levels in the same extract after centrifugation were not observed in
previous flavanone methods[14–17]. In addition to these extraction steps, the influence of other factors such as solvent, extraction
cycles and sample to solvent ratio can play a key role in accurate quantification of flavanones. Furthermore, the commonly used
extraction procedures such as microwave extraction and sonication were also evaluated. The objective of the present study was
to evaluate the extraction efficiency of various solvents, temperature, centrifugal speed, and centrifuge temperature, number of
extraction cycles, microwave extraction and sonication on grapefruit flavanones.
Nevertheless, the physical
phenomenon behind flavanone extraction with different solvents
and their distribution in a miscible solvent mixture after centrifugation has not been investigated. Furthermore, variations in flavanone
levels in the same extract after centrifugation were not observed in
previous flavanone methods[14–17]. In addition to these extraction steps, the influence of other factors such as solvent, extraction
cycles and sample to solvent ratio can play a key role in accurate quantification of flavanones. Furthermore, the commonly used
extraction procedures such as microwave extraction and sonication were also evaluated. The objective of the present study was
to evaluate the extraction efficiency of various solvents, temperature, centrifugal speed, and centrifuge temperature, number of
extraction cycles, microwave extraction and sonication on grapefruit flavanones.
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