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- 芳樟醇
- 以黄樟油、冬青油为香料的无醇饮料
- 钓樟醇
- 更多网络例句与樟醇相关的网络例句 [注:此内容来源于网络,仅供参考]
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The main chemical components of Bulgaria are Citronellol、Trans-Geraniol、Nerol、Methyl eugenol、Linalool、β-Phenyl ethyl alcohol. The main chemical components of Xinjiang Province areβ-citronellol、trans-geraniol,β-phenyl ethyl alcoho, farnesol, geranellyl acetete, 7-octamoic acid ethyl ester.
保加利亚玫瑰油的主要成分为β-香茅醇、反式-香叶醇、橙花醇、芳樟醇、β-苯乙醇、甲基丁子香酚;新疆玫瑰油的主要成分为β-香茅醇、反式-香叶醇、β-苯乙醇、7-辛烯酸乙酯、乙酸香叶酯、金合欢醇。
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Water,Hydrogenated Polyisobutene,Cyclohexasiloxane,Glycerin,Alcohol Denat,Cetearyl Alcohol,PEG-20,Petrolatum,C13-14 Isoparaffin,Zea Mays Oil,Tocopheryl Acetate,Hydroxypropyl Tetrahydropyrantriol,Hydrolyzed Soy Protein,CI 14700/Red 4,Phenoxyethanol,Adenosine,PEG-100 Stearate,Ethylparaben,Triethanolamine,Polyacrylamide,Malus Domestica Stem Cell Culture,CI 19140/Yellow 5,Dimethyl Isosorbide,Dimethicone,Dimethiconol,Limonene,Xanthan Gum,Pentaerythrityl Tetra-Di-T-Butyl Hydroxyhydrocinnamate,Linalool,2-Oleamido-1,3-Octadecanediol,Capryloyl Salicylic Acid,Acrylates/C10-30 Alkyl Acrylate Crosspolymer,Passiflora Edulis Seed Oil,Disodium EDTA,Castanea Sativa Seed Extract,Butyrospermum Parkii· Cetyl Alcohol,Butylene Glycol,Octyldodecanol,Cetearyl Glucoside,Methylparaben,Citronellol,Prunus Armeniaca Kernel Oil,Laureth-7,Coumarin,Oryza Sativa Bran Oil,Glyceryl Stearate,Fragrance
水,甘油,氢化聚异丁烯,液体石蜡/矿油,丁二醇,环己硅氧烷,鲸蜡醇,甘油硬脂酸酯,棕榈油,玉米胚芽油,PEG-100硬脂酸酯,白蜂蜡/蜂蜡,肉豆蔻醇肉豆蔻酸酯,石蜡,香精,腺苷,苧烯,山梨醇,CI 14700,CI 19140,稻糠油,杏仁油,EDTA二钠,羟丙基四氢吡喃三醇,苯氧乙醇,聚乙二醇-14M,异十六烷,氢氧化钠,辛基十二醇,季戊四醇四(双-t-丁基羟基氢化肉桂酸)酯,山梨坦三硬脂酸酯,水解大豆蛋白,卡波姆,鸡蛋果籽油,苹果果实提取物,欧洲栗籽提取物,异山梨醇酐二甲醚,聚山梨醇酯-80,辛酰水杨酸,2-油酰胺基-1,3-十八烷二醇,氯苯甘醚,麦芽糖醇,香豆素,黄原胶,微晶蜡,丙烯酰胺/丙烯酰基二甲基牛磺酸钠共聚物,丙二醇,芳樟醇,香茅醇,玉米油,羟苯丙酯,羟苯甲酯
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The main compounds in the natural terpineol oil were eucalyptol, trans4thujanol, pisopropenyl toluene, cis4thujanol, linalool, camphor, borneol, 4terpineol,αterpineol and safrole.
天然松油醇粗油中主要成分是1,8桉叶素、反式4艹守醇、p异丙烯基甲苯、顺式4艹守醇、芳樟醇、樟脑、龙脑、4松油醇、α松油醇和黄樟素。
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It showed that main constituents are linalool, geraniol, farnesol , safrole, citral, t-anethole , decanal and lauric aldehyde respectively and with high cont.
从它们的利用部位花、果、叶和根中,可提取芳香油,主要成分分别为芳樟醇、香叶醇、金合欢醇、黄樟素、柠檬醛、茴香醚及癸醛、十二碳醛等,含量相当高,为重要调香原料,有的作药用,颇具发展种植和开发利用价值。
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The method is suitable for the analys is of samples from the synthesis process of linalool and its products.
方法可以用于芳樟醇合成工艺中过程样品及芳樟醇成品的分析。
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It was found that the catalysts with 1.5% Pd content showed a higher activity. At 60—65℃ and 0.6MPa with a total catalyst amount of 0.5%,the conversion of dehydrolinalool was higher than 99% and the selectivity for linalool was higher than 96%. The change in catalyst composition upon reused for 7 times was evaluated by using ICP,and the effect of Pb and Bi to the catalytic behavior was discussed.
结果表明,钯质量分数为1.5%的催化剂活性较高,在反应温度为60~65 ℃,系统压力为0.6 MPa,催化剂用量为原料质量的0.5%,去氢芳樟醇转化率大于99%时,芳樟醇选择性大于96%,催化剂套用7次后,利用ICP对使用前后催化剂的组成进行分析后,根据反应结果分析了Pb和Bi对加氢反应的作用。
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In this study, we found out that linalool, a small-molecule compound, could inhibit the growth of various human lymphocyte leukemia cell lines significantly. Meanwhile, it showed little toxicity to normal hematopoietic cells. To determine effects of linalool on the growth of a serious of human leukemia cell lines and normal hematopoietic cells and to explore its possible mechanisms, we employed various technologies, including MTT assay, Flow cytometry, Human Cancer PathwayFinder II Gene Array, Western Blot, RT-PCR and so on.
我们在筛选抗肿瘤小分子化合物时,发现天然小分子化合物芳樟醇能明显抑制多种人淋巴细胞白血病细胞增殖,而对正常人骨髓造血细胞及外周血细胞的增殖没有明显的影响,为此我们用MTT技术、流式细胞术、肿瘤相关信号通路分析技术以及Western blot、RT-PCR等手段和方法探讨了芳樟醇对不同类型白血病细胞系及相应正常造血细胞中的影响情况,及其诱导白血病细胞凋亡的可能分子机制。
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The efficacy of three formulations to B.germanica was evaluated with a small container and a quadr-cage olfactometer system. Results The linalool deploied with aethylenum-Vac granule and activated alumina granule had obvious repellency to B.germanica, and 97.7% repellency of the former was more effective than the latter.
结果 芳樟醇-乙烯醋酸乙烯酯颗粒剂与活性氧化铝颗粒剂对德国小蠊有明显的驱避性,其中芳樟醇-乙烯醋酸乙烯酯颗粒剂优于后者,驱避性高达97.7%,而芳樟醇。
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Aroma components of Hexylalcohol,Benzeneethanol,Butylalcohol,Pentylalcohol, ethyl acetate, Lactic acid ethylester, Butanedioic acid,diethylester, isopentylacohol acetate, acetic acid hexylester, acetic acid phenethylester, hexanoic acid ethylester, ethyl caprylate, decanoic acid ethylester, octanoic acid, linalool andα-terpineol were identified in former kiwi wine reports.
本试验首次在猕猴桃酒中发现了油酸乙酯,棕榈酸乙酯,9-癸烯酸,肉豆蔻酸乙酯,月桂酸乙酯,香茅醇,法呢醇,异薄荷酮香气物质,目前国内外资料中报道的猕猴桃酒香气物质—己醇,苯乙醇,丁醇,戊醇,乙酸乙酯,乳酸乙酯,琥珀酸二乙酯,乙酸异戊酯,乙酸己酯,乙酸苯乙酯,己酸乙酯,辛酸乙酯,癸酸乙酯,辛酸,芳樟醇,α-松油醇等均在本试验研究中也检测出,并得到证实。
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The components of algycone were benzyl alcohol, trans-linalool oxide, linalool, phenyl ethanol, methyl salicylate and geraniol in fresh tea leaves while those in green tea was five kinds as those of fresh tea leaves excepted benzyl alcohol and those in black tea were only phenyl ethanol and trans-linalool oxide.
糖苷类香气前体检测结果表明,鲜叶中的香气前体苷元有6种,分别为苯甲醇、反式-芳樟醇氧化物、芳樟醇、苯乙醇、水杨酸甲酯和香叶醇;绿茶中有5种,苯甲醇未检测出;而红茶中只检测出了反式-芳樟醇氧化物和苯乙醇两种。
- 更多网络解释与樟醇相关的网络解释 [注:此内容来源于网络,仅供参考]
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citronellol:香茅醇
表上的"香茅醇"(citronellol)、"橙花醇"(neroli)和"芳樟醇"(linalool)之类术语当时把我搅得天花乱坠. 我发现香水里原来颇具学问,但这只让我更不肯轻易涉足这个领域了. 去年年初发行的>(Perfumes: the Guide)作者卢卡•
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Geraniol:牻牛儿醇
[化学成份]柚的外果皮含挥发油,主成分为柠檬醛(citral),牻牛儿醇(geraniol),芳樟醇(linalool),邻氨基本甲酸甲酯(methylanthranilate). 另据报道,挥发油中主含柠檬烯(limonene),还含a-蒎烯(a-pinene)等.
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limonene linalool:柠檬/芳樟醇
hexyl cinnamal 己基肉桂醛 | limonene linalool 柠檬/芳樟醇 | citronellol 香茅醇
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Linalool:芳樟醇
表上的"香茅醇"(citronellol)、"橙花醇"(neroli)和"芳樟醇"(linalool)之类术语当时把我搅得天花乱坠. 我发现香水里原来颇具学问,...
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Linalool oxide:氧化芳樟醇
266 d-limonene d-苎烯 2633 I1734 | 267 linalool oxide 氧化芳樟醇 3746 I1031 | 268 linalyl butyrate 丁酸芳樟酯 2639 I1471
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dihydro linalool:二氢芳樟醇
dihydro jasmone 二氢茉莉酮 | dihydro linalool 二氢芳樟醇 | dihydrobenzene 二氢苯
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Guaiol:愈创醇
愈创烷结构存在于毛叶木姜子、豺皮樟根和大果木姜子中, 其萜烯有α愈创木烯(αguaiazulene), 其含氧衍生物有愈创醇(guaiol)、喇叭茶醇(ledol)和匙叶桉叶油醇(spathulenol); 其中豺皮樟根中的愈创醇含量高达18.76%.
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lauryl alcohol:樟醇
Isopropyl neopentanoate 第三戊醇鹽 | Lauryl alcohol 樟醇 | Linseed oil 亞麻子油
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linalol:芫荽醇
linaloewoodoil 沉香木油 | linalol 芫荽醇 | linalool 芫荽醇 沉香醇 芳樟醇
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rhodinol:玫瑰醇
一种称做"芳樟醇氧化物"(Linalool Oxide)的商品是多种氧杂环化合物的混和物,这些杂环化合物是下列三种结构的混合物,它们不易直接氧化而得到.香茅醇有两种光学异构体.较早使用的玫瑰醇(Rhodinol)一词,实际上是下面两种结构的统称,