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1.
Int J Food Sci ; 2017: 2375181, 2017.
Article in English | MEDLINE | ID: mdl-28761874

ABSTRACT

Citrus junos Tanaka (yuzu) has a strong characteristic aroma and thus its juice is used in various Japanese foods. Herein, we evaluate the volatile compounds in yuzu juice to investigate whether underwater shockwave pretreatment affects its scent. A shockwave pretreatment at increased discharge and energy of 3.5 kV and 4.9 kJ, respectively, increased the content of aroma-active compounds. Moreover, the underwater shockwave pretreatment afforded an approximate tenfold increase in the scent intensity of yuzu juice cultivated in Rikuzentakata. The proposed treatment method exhibited reliable and good performance for the extraction of volatile and aroma-active compounds from the yuzu fruit. The broad applicability and high reliability of this technique for improving the scent of yuzu fruit juice were demonstrated, confirming its potential for application to a wide range of food extraction processes.

2.
Food Chem ; 216: 123-9, 2017 Feb 01.
Article in English | MEDLINE | ID: mdl-27596400

ABSTRACT

Citrus junos Tanaka (yuzu) has a strong characteristic aroma, and hence, yuzu juice is used in a number of Japanese foods. We herein evaluated the functional compounds of yuzu juice to investigate whether underwater shockwave pretreatment affects its functionality. Employing the shockwave pretreatment at an increased discharge and energy of 3.5kV and 4.9kJ, respectively, resulted in an increase in the flavanone glycoside content and oxygen radical absorbance capacity (ORAC). The ORAC value of yuzu juice cultivated in Rikuzentakata increased approximately 1.7 times upon underwater shockwave pretreatment. The treatment method proposed herein exhibited reliable and good performance for the extraction of functional and antioxidant chemicals in yuzu fruits, and was comparable with traditional squeezing methods. The high applicability and reliability of this technique for improving the antioxidant functionality of yuzu fruit juice was demonstrated, confirming the potential for application to a wide range of food extraction processes.


Subject(s)
Antioxidants/analysis , Citrus/chemistry , Fruit and Vegetable Juices/radiation effects , Fruit/chemistry , High-Energy Shock Waves , Plant Extracts/analysis , Water/chemistry , Antioxidants/chemistry , Antioxidants/isolation & purification , Citrus/radiation effects , Food Handling , Fruit/radiation effects , Plant Extracts/chemistry , Plant Extracts/radiation effects
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