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1)  (+)α-terpineol
右旋α-松油醇
1.
(+)α-terpineol
采用高效液相色谱法测定了松节油深加工产物中松油醇的含量,以Waters porasil硅胶柱为固定相,正己烷-乙酸乙酯(99+1)混合溶液为流动相,检测波长为238 nm,外标法定量,在室温条件下分离α-松油醇的左旋、右旋异构体及其他组分,并且准确测定左旋α-松油醇及右旋α-松油醇含量。
2)  (-)α-terpineol
左旋α-松油醇
1.
Enantiotropic isomers of(-)α-terpineol and(+)α-terpineol and some other component were separated on the chromatographic column of waters porasil(4.
采用高效液相色谱法测定了松节油深加工产物中松油醇的含量,以Waters porasil硅胶柱为固定相,正己烷-乙酸乙酯(99+1)混合溶液为流动相,检测波长为238 nm,外标法定量,在室温条件下分离α-松油醇的左旋、右旋异构体及其他组分,并且准确测定左旋α-松油醇及右旋α-松油醇含量。
3)  α-Terpineol
α-松油醇
1.
A Study on Synthesis of α-Terpineol Catalyzed by A Solid Catalyst;
一种新型催化合成α-松油醇的固体催化剂研究
2.
Reserach and Development on Synthesis of Series Fine Chemicals from Rosin and Turpentine(I) Preparation of Dihydro-α-terpineol by Catalytic Hydrogenation of α-Terpineol;
松节油和松香催化深度加工合成系列精细化工产品的研究与开发──(I)α-松油醇催化加氢制二氢α-松油醇
3.
Two kinds of natural clinoptilolite from Yunnan were used as catalysts in the hydration of α-pinene. Relation between reaction activity and catalyst acidity was studied by using temperature programmed desorption(TPD). Effects of reaction temperature, reaction time and amounts of catalysts on the hydration of α-pinene are discussed,α-Terpineol is the main hydration product
用两种云南产天然斜发沸石催化α-蒎烯的水合反应,采用程序升温脱附法研究了催化活性与催化剂酸性质间的关系;讨论了反应温度、反应时间及催化剂用量对水合反应的影响,生产物为α-松油醇。
4)  αTerpineol
α-松油醇
1.
The kinetics of parallel and consecutive network reaction in the “liquidliquidsolid” threephase catalytic hydration of αpinene on porous sulphonic acid resin DSA1 by dioxane as solvent was studied for preparation of αterpineol.
研究了以二氧六环作溶剂时α-蒎烯在DSA-1固体酸催化剂上“液-液-固”三相水合制α-松油醇中并行和串行网联的复杂反应动力学。
5)  α-(L)-terpineol
左旋松油醇
1.
The optimum ingredients of the 50% mixed propiconazol and α-(L)-terpineol emulsifiable concentrate had been screened through the screening experiments.
左旋松油醇乳油的最佳配比为:丙环唑20%,左旋松油醇30%,乳化剂10%,溶剂40%。
2.
The antimicrobial activities of α-(L)-terpineol was tested against four plant pathogenic bacteria and 14 plant pathogenic fungi under laboratory conditions.
在室内测定了左旋松油醇对4种植物病原细菌和14种植物病原真菌的抑菌活性。
6)  Dihydro-α-terpineol
二氢α-松油醇
1.
Reserach and Development on Synthesis of Series Fine Chemicals from Rosin and Turpentine(I) Preparation of Dihydro-α-terpineol by Catalytic Hydrogenation of α-Terpineol;
松节油和松香催化深度加工合成系列精细化工产品的研究与开发──(I)α-松油醇催化加氢制二氢α-松油醇
补充资料:α-松油醇
CAS: 10482-56-1
分子式: C10H18O
分子质量: 154.25
沸点: 217-218℃
熔点: 36.4-35℃
中文名称:α-松油醇;α-萜品醇;(S)-α,α-4-三甲基-3-环己烯-1-甲醇;α-松油醇;松油醇;A-萜品醇;桦脂醇;松油脑;(S)-A,A-4-三甲基-3-环己烯-1-甲醇;A-松油醇

英文名称: .alpha.-Terpineol;(l)-alpha-terpineol;alpha,4-trimethyl-alph (s)-3-cyclohexene-1-methano;alpha-terpieol;alpha-terpineol;l-alpha-terpineol;(S)-p-menth-1-en-8-ol

性质描述: 无色液体或低熔点透明结晶体,具有丁香味,可燃。一般工业上出售的是三种异构体的混合物。熔点12-14℃,沸点214-224℃,相对密度0.9337,固化点2℃,旋光度[α]-0°10'~+0°10',沸程214-224℃,折射率1.4825-1.4850。1份松油醇能溶于2份(体积)70%的乙醇溶液中,微溶于水和甘油。有樟脑气味,辛辣味。

生产方法: 用23%稀硫酸处理松节油,使其中的主成分α-蒎烯转变生一水合萜二醇,将此中间体脱水得到粗制萜品醇,再经分馏;精制,精精品。原料消耗定额:松节油1730kg/t;硫酸(98%)650kg/t;烧碱160kg/t。

用途: 调配紫丁香型香精的主剂,耐碱性强,适用于皂用香精,其乙酸酯具有香橼和熏衣草香气,用于香精的配制。亦用于医药;农药;塑料;肥皂;油墨;仪表和电讯工业中,是玻璃器皿上色彩的优良溶剂。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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