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1)  amyl alcohol
戊醇
1.
Amyl acetate was synthesized from acetic acid and amyl alcohol in the presence of SO~~(2~-)_4/TiO_2.
以SO24-/TiO2为催化剂,通过乙酸与戊醇反应合成了乙酸戊酯。
2.
The process condition of preparing amyl alcohol with C5 fraction as material, through sulphuric acid addition hydrolyzation was studied.
研究了以C5馏分为原料,用硫酸加成水解法制备戊醇的工艺条件。
2)  n-pentanol
戊醇
1.
Lignin peroxidase (LiP) hosted in Brij 30/cyclohexane/water nonionic reversed micelle could express its catalytic activity, but in Triton X-100/n-pentanol/cyclohexane/water nonionic reversed micelle LiP didn t show any catalytic activity.
直链醇是TritonX-100形成反胶束的必要组分,为揭示醇的作用,还考察了戊醇对Brij30反胶束中LiP催化活力的影响,发现高浓度戊醇对LiP有失活作用。
3)  Pentanol ['pentə,nɔ:l]
戊醇
1.
Atmospheric Pressure Oxidation of Pentanol by Dioxygen Using Oxide-supported Platinum Catalysts;
氧化物负载铂催化剂对氧气常压氧化戊醇反应的催化作用
4)  xylitol [英]['zailitɔl]  [美]['zaɪlətɑl]
戊醇
5)  isopentyl alcohol
异戊醇
1.
Isoamyl acetate was synthesized with acetic acid and isopentyl alcohol by using Ca(p-CH3C6H4SO3) 2 as catalyst.
以乙酸和异戊醇为原料、对甲苯磺酸钙为酯化催化剂合成乙酸异戊酯,研究影响酯化率的因素。
2.
The advantages of using anhydrous potassium carbonate instead of diisopropylethylamine, replacing Pt/C catalyst with hydrazine hydrate and common catalyst, using isopentyl alcohol as solvent were discussed separately.
并分别讨论了采用无水碳酸钾代替二异丙基乙胺、水合肼和普通催化剂代替铂炭催化剂以及采用异戊醇作为溶剂的优点。
3.
Eight kinds of solid acid catalysts for esterification of acetic acid and isopentyl alcohol are studied in this paper.
本文研究了8种固体酸催化剂催化乙酸与异戊醇的酯化反应 ,结果表明 :FeCl3。
6)  pentaerythritol [,pentəi'riθritɔl]
季戊四醇
1.
Synthesis of pentaerythritol diacetals and diketals catalyzed by methanesulfonic acid;
甲基磺酸催化合成季戊四醇双缩醛(酮)
2.
Synthesis of star-shaped poly(p-dioxanone) by pentaerythritol;
以季戊四醇为引发剂的星形聚对二氧环己酮的合成
3.
Effect of 4A Zeolite on Property of Flame Retardant PP by Melamine Phosphate/Pentaerythritol;
4A分子筛对三聚氰胺磷酸盐/季戊四醇阻燃PP性能的影响
补充资料:戊醇
    分子量  152.15 
    性质  白色略带甜味的斜方晶系结晶体或单斜晶系结晶体。熔点:斜方晶系结晶体为61-61.5℃;单斜晶系结晶体为93-94.5℃。沸点215-217℃。易溶于水、乙醇及吡啶类溶剂。
    应用  有机工业用于制取表面活性剂。合成树脂工业用于制造醇酸树脂等。塑料工业用于创造聚氯乙烯树脂增塑剂、玻璃纸增塑剂和泡沫塑料的发泡剂。国防工业用于代替甘油制造作药。电气工业用于制造绝缘高压电线材料。农药和食晶工业用于制造乳化剂。石油工业用于制造破乳剂。
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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