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1)  octanols
辛醇类
2)  octanol ['ɔktənɔl]
辛醇
1.
Effects of octanol on penumbra following experimental cerebral ischemia/reperfusion
缝隙连接阻断剂-辛醇对实验性局灶性脑缺血/再灌注半暗带的影响
2.
The article expounds on supply-demand situation of n-butanol and octanol market both home and abroad and forecasts its development trends.
阐述并预测了国内外正丁醇和辛醇市场的供需情况及发展趋势,并分析了国内丁辛醇的价格走势,简述了羰基合成丁辛醇工艺技术发展动态,最后对我国发展丁辛醇提出了建议。
3.
Butanol and octanol raffinates discharged from butanol and octanol plants contained valuable components,such as butyraldehyde,butanol,octanol and octenealdehyde,but the raffinates had not been rationally used as resource in some existing units.
丁辛醇装置排出的丁辛醇残液含有一定量的丁醛、丁醇、辛烯醛、辛醇等有价值的组分,但国内已有的装置不能合理利用这一资源。
3)  ethylhexanol
辛醇
1.
Sulphuric acid colour is an important quality index for 2 ethylhexanol (EH) and a difficult point in process control.
硫酸色度是辛醇产品的一项重要质量指标,也是生产控制中的一个难点。
4)  2-ethylhexanol
辛醇
1.
Study on a catalyst for liquid-phase hydrogenation of unsaturated 2-ethylhexanal and 2-ethylhexenol in 2-ethylhexanol;
辛醇液相加氢精制催化剂的研究
2.
Studies on New Catalysts for Liquid Phase Hydrogenation of Unsaturated 2-ethylhexanal and 2-ethylhexenol in 2-ethylhexanol;
辛醇液相加氢精制催化剂的研究
5)  octyl alcohol
辛醇
1.
This paper summarized the development of butyl alcohol & octyl alcohol in our country.
概述了中国丁醇、辛醇的发展状况, 介绍了丙烯羰基合成丁辛醇先进生产技术, 对中国丁醇、辛醇市场需求进行了预测。
2.
Sodium octyl phosphate taking monoester as major composition,using octyl alcohol and phosphorus pentoxide as starting materials,is synthesized,better process conditons is determined,and influential factors are discussed.
以辛醇和五氧化二磷为原料合成了以单酯为主的辛醇磷酸酯钠盐。
6)  2-octanol
2-辛醇
1.
Vapor phase synthesis of 2-octene via dehydration of 2-octanol;
2-辛醇气相脱水合成2-辛烯
2.
Preparation of Optically Active 2-octanol by Microbial Asymmetric Reduction;
微生物法不对称还原合成手性2-辛醇的研究
3.
Kinetic Resolution of (R, S)-2-octanol by Esterification Reactions with Mycelium-bound Lipase from Rhizopus Chinensis;
华根霉菌丝结合脂肪酶酯合成动力学拆分(R,S)-2-辛醇
补充资料:C24类甾醇类
分子式:
CAS号:

性质:胆汁酸属于类甾(或固)醇类,又称为C24类甾醇类。正常人胆汁中有结合胆汁酸和游离胆汁酸两大类,并以前者为主。游离胆汁酸有胆酸、脱氧胆酸和鹅脱氧胆酸等;结合胆汁酸系指上述胆汁酸以酰胺键(简称肽键)与甘氨酸或牛磺酸结合,分别成为甘氨胆酸或牛磺胆酸等。这些化合物存在于大多数脊椎动物中,是“胆苦”的主要成分。结合胆汁酸易溶于水,这是由于其分子中既含有亲水的羟基和羧基,又含有疏水的甲基,且这两种性质不同的基团又完全排列在环戊烷多氢菲核的两侧,使分子分为“亲水”和“疏水”两个侧面。故结合胆汁酸具有强乳化剂功能,使肠腔内油脂乳化成微粒,以增加油脂与消化液中脂肪酶(lipase)接触面积而便于脂类消化吸收,同时也促进对脂溶性维生素的吸收。

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