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1)  phenolic glycoside compounds
酚苷类化合物
2)  aglycome
苷类化合物
1.
A new aglycome compound was isolated from Rhododendrom molle G.
Don]果实中分得一个新的苷类化合物。
3)  phenols
酚类化合物
1.
QSAR for toxicities of phenols using improved genetic algorithm combined with BP artificial neural network;
改进GA算法结合ANN用于酚类化合物的QSAR研究
2.
Determination of Phenols in Drinking Water by Reversed-High Performance Liquid Chromatography;
反相高效液相色谱法测定饮用水中的酚类化合物
3.
Effect of the Phenols on Induction Period of FCC Gasoline;
催化裂化汽油中的酚类化合物对催化裂化汽油诱导期的影响
4)  phenolic compounds
酚类化合物
1.
Adsorption properties of palygorskite-chitosan supported cyclodextrin-activated carbon for phenolic compounds;
坡缕石-壳聚糖负载环糊精-活性炭对酚类化合物的吸附行为
2.
Liqulid-phase microextraction combined with gas chromatography for the analysis of phenolic compounds in waste water;
直接液相微萃取气相色谱分析测定废水中酚类化合物
3.
Concentration and pollution characteristics of phenolic compounds in Qiantang River.;
钱塘江水系中酚类化合物的浓度水平及污染特征
5)  phenolic compound
酚类化合物
1.
Adsorption of phenolic compounds by aged refuse;
酚类化合物在矿化垃圾中的吸附性能与结构相关性研究
2.
Antifungal activities of phenolic compounds against Candida albicans and their structure- activityr elationship;
酚类化合物对白色念珠菌的抗真菌活性及其构效关系(英文)
3.
Adsorption of phenolic compounds on a hypercrosslinked resion modified by 2-cabonylbenzoyl group;
酚类化合物在2-羧基苯甲酰基修饰的超高交联树脂上的吸附
6)  phenol compounds
酚类化合物
1.
A novel determination method for trace of seven phenol compounds in air samples has been established.
建立了Tenax采样管富集气相色谱-质谱测定空气中痕量酚类化合物的方法。
2.
After optimization of separation conditions, baseline separation of several phenol compounds was performed on the monolithic col.
操作条件优化后,利用该柱基线分离了几种酚类化合物。
3.
The physiological activities of trace elements,low molecule organic acids,higher fatty acids and phenol compounds in liquor body of Wuliangye-- - Chinese Famous Liquor were illustrated in this paper.
阐述了中国名酒——五粮液酒体中的微量元素、低分子有机酸、高级脂肪酸、酚类化合物等微量成分的生理活性,说明适量饮用五粮液有益于健康。
补充资料:α-藦烯双环单萜类化合物
分子式:
CAS号:

性质:又称α-松节烯,α-藦烯双环单萜类化合物。有一对对映体,均为油状。右旋体熔点-50℃,沸点155~156℃,旋光度[α]D+51.1°,相对密度0.8590,折射率1.4662。消旋体沸点156.2℃,相对密度0.8585,折射率1.4658。溶于醇、氯仿、醚、冰醋酸,几乎不溶于水。来源于松科植物松油脂(turpentine),杜鹃科植物头花杜鹃(Rhododendron capitatum Maxim.)。具有明显的镇咳驱痰作用,并具有抗真菌作用。α-蒎烯是松节油的主要成分之一,可做香料成分,也是合成香味化合物的重要中间体,还用于制造樟脑、龙脑和松油醇等。

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