citrus_unshiu_marcow
Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende Überarbeitung | |||
| citrus_unshiu_marcow [2022/04/08 13:58] – andreas | citrus_unshiu_marcow [2025/12/24 14:50] (aktuell) – andreas | ||
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| 温州蜜柑 unshū mikan (jap.), Satsuma mandarin, Satsuma orange, **Satsuma (Mandarine)**, | 温州蜜柑 unshū mikan (jap.), Satsuma mandarin, Satsuma orange, **Satsuma (Mandarine)**, | ||
| - | "Its fruit is sweet and usually seedless, about the size of other mandarin oranges (Citrus reticulata), | + | "Its fruit is sweet and usually seedless, about the size of other mandarin oranges (Citrus reticulata), |
| Major constituents found in the absolute of C.unshiu flowers were linalool (2.1%), α-terpineol (0.7%), 2-phenyethanol (5.1%), cis-jasmone (0.4%), benzyl cyanide (4.7%), methyl anthranilate (2.0 %), farnesol (7.2%), indole (0.3 %), and methyl oleate (0.2%). Other compounds contributing to the greenish-fruity and somewhat pungent but also floral sweet odor were (Z)-3-hexenyl acetate, farnesyl acetate, geranylacetone, | Major constituents found in the absolute of C.unshiu flowers were linalool (2.1%), α-terpineol (0.7%), 2-phenyethanol (5.1%), cis-jasmone (0.4%), benzyl cyanide (4.7%), methyl anthranilate (2.0 %), farnesol (7.2%), indole (0.3 %), and methyl oleate (0.2%). Other compounds contributing to the greenish-fruity and somewhat pungent but also floral sweet odor were (Z)-3-hexenyl acetate, farnesyl acetate, geranylacetone, | ||
| - | [Sakurai, Kazutoshi, et al. " | + | [Sakurai, Kazutoshi, et al. " |
| "The volatile composition of the headspace from Citrus unshiu Marcov. forma Miyagawa-wase blossom was investigated. The volatile constituents were absorbed by a solid-phase microextraction (SPME) fiber and directly transferred to a GC-MS... p-Cymene (23.3%) was the most abundant component in the headspace of fresh C. unshiu blossom; γ-terpinene was the most abundant in shade- and microwave-dried samples (26.8 and 31.2%, respectively) and β-caryophyllene (10.5%) in freeze-dried sample." | "The volatile composition of the headspace from Citrus unshiu Marcov. forma Miyagawa-wase blossom was investigated. The volatile constituents were absorbed by a solid-phase microextraction (SPME) fiber and directly transferred to a GC-MS... p-Cymene (23.3%) was the most abundant component in the headspace of fresh C. unshiu blossom; γ-terpinene was the most abundant in shade- and microwave-dried samples (26.8 and 31.2%, respectively) and β-caryophyllene (10.5%) in freeze-dried sample." | ||
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| Main flower volatiles were 2-hexenal (tr-2.8%), α-pinene (tr-2.8%), β-pinene (2.9-6.5%), myrcene (0-2.5%), p-cymene (0-8.5%), limonene (0-1.6%), β-ocimene (2.2-6.3%), γ-terpinene (tr-13.7%), linalool (17.4-22.7%), | Main flower volatiles were 2-hexenal (tr-2.8%), α-pinene (tr-2.8%), β-pinene (2.9-6.5%), myrcene (0-2.5%), p-cymene (0-8.5%), limonene (0-1.6%), β-ocimene (2.2-6.3%), γ-terpinene (tr-13.7%), linalool (17.4-22.7%), | ||
| - | [Azam, M., Song, M., Fan, F., Zhang, B., Xu, Y., Xu, C., & Chen, K. (2013). Comparative analysis of flower volatiles from nine Citrus at three blooming stages. International journal of molecular sciences, 14(11), 22346-22367] [[http:// | + | [Azam, M., Song, M., Fan, F., Zhang, B., Xu, Y., Xu, C., & Chen, K. (2013). Comparative analysis of flower volatiles from nine Citrus at three blooming stages. International journal of molecular sciences, 14(11), 22346-22367] [[https:// |
| Analysis of the flower scent with SPME/GC-MS showed linalool (67.2%), myrcene (5.6%), nerolidol (5.1%), methyl anthranilate (4.7%), 2-aminobenzaldehyde (1.5%), 3, | Analysis of the flower scent with SPME/GC-MS showed linalool (67.2%), myrcene (5.6%), nerolidol (5.1%), methyl anthranilate (4.7%), 2-aminobenzaldehyde (1.5%), 3, | ||
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| An aroma extract dilution analysis (AEDA) of the polar fractions of Satsuma mandarin peel oil identified five odorants in common as the most odor-active volatiles: (Z)-hex-3-enal, | An aroma extract dilution analysis (AEDA) of the polar fractions of Satsuma mandarin peel oil identified five odorants in common as the most odor-active volatiles: (Z)-hex-3-enal, | ||
| - | [Aroma character impact compounds in Kinokuni mandarin orange (Citrus kinokuni) compared with Satsuma mandarin orange (Citrus unshiu)., Miyazawa, N., Fujita, A., Kubota, K., Bioscience, biotechnology, | + | [Aroma character impact compounds in Kinokuni mandarin orange (Citrus kinokuni) compared with Satsuma mandarin orange (Citrus unshiu)., Miyazawa, N., Fujita, A., Kubota, K., Bioscience, biotechnology, |
| - | [[http:// | + | |
| - | {{: | + | {{: |
| - | Author: | + | Citrus unshiu © Batholith [[https:// |
| - | [[https:// | + | |
citrus_unshiu_marcow.txt · Zuletzt geändert: 2025/12/24 14:50 von andreas
