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1)  2-Butanol
仲丁醇
1.
Studies on Dehydrogenation of 2-Butanol over Supported Copper Catalysts Prepared by Sol-Gel and Impregnation Methods;
溶胶-凝胶和浸渍法制备的铜催化剂在仲丁醇脱氢反应中的研究
2.
Study on catalysts for dehydrogenation of 2-butanol to butanone;
新型仲丁醇脱氢催化剂的研制
3.
Dehydrogenation of 2-butanol on Cu/Al_2O_3 catalyst prepared by impregnation;
浸渍法制备的Cu/Al_2O_3催化剂上仲丁醇的催化脱氢
2)  sec-butyl alcohol
仲丁醇
1.
Under the reaction conditions of butylene hydration producing sec-butyl alcohol as follows:temperature was from 145 ℃ to 165 ℃,LHSV of butylene was 1.
丁烯水合制仲丁醇反应条件:温度145~165℃,丁烯空速1。
2.
Main components in industrial produced sec-butyl alcohol were separated and quantitatively analyzed by means of GC-MS with different columns.
采用气相色谱-质谱仪和不同类型的色谱柱对工业仲丁醇产品进行了分离和定性分析,确定了仲丁醇产品中的杂质种类,为建立气相色谱定量分析方法确立了目标组分。
3.
BC-DH2004 catalyst was used in dehydrogenation of sec-butyl alcohol(SBA)to prepare methyl ethyl ketone(MEK).
采用BC-DH2004催化剂进行仲丁醇脱氢合成甲乙酮的研究。
3)  sec-butanol
仲丁醇
1.
Removing sec-butanol from butylene by adsorption;
吸附法脱除丁烯中仲丁醇
2.
Techno-economic analysis of sec-butanol production processes;
仲丁醇生产工艺路线的技术经济分析
3.
Novel adsorbent for removal of sec-butanol from recycle butylenes in MEK unit
甲乙酮装置循环丁烯脱除仲丁醇吸附剂
4)  sec butyl alcohol
仲丁醇
1.
The processes of adsorption and oxidation of sec butyl alcohol on Pt electrode and Pt electrodes modified with Sb and S (Pt/Sb ad and Pt/S ad ) were studied by using cyclic voltammetry and electrochemical quartz crystal microbalance (EQCM).
运用电化学循环伏安和石英晶体微天平研究了HClO4溶液中仲丁醇在Pt电极及以Sb和S吸附原子修饰的Pt(Pt/Sbad和Pt/Sad)电极上的电催化氧化过程 。
5)  H_2O-2-butanol
仲丁醇-水
6)  water-2-butanol
水-仲丁醇
1.
In order to meet the demand of the design of butylene hydration process,we measured the data of liquid-liquid equilibrium for ternary system water-2-butanol-carbon-4 at high pressure.
液液平衡实验数据对萃取过程的设计十分重要,实验测定了水-仲丁醇-C4三元体系的高压液液平衡数据,以满足丁烯水合过程设计的需要,主要讨论了气相色谱法测定水-仲丁醇含量的可靠性。
补充资料:仲丁醇
      CH3CH2CH(OH)CH3 又名2-丁醇。无色带香味的液体,沸点99.5°C。主要用于制造甲基乙基酮,也可作为制造增塑剂,表面活性剂等的原料,还可代替正丁醇作为溶剂,或作为浮选剂、抗氧化剂使用。仲丁醇可由丁烯(1-丁烯、顺2-丁烯、反2-丁烯)水合制得,反应条件随硫酸浓度而异。在 75%~85% 的硫酸浓度下,温度30~40°C,压力0.2~0.3Mpa,生成的仲丁基硫酸酯在加热条件下即水解为仲丁醇。仲丁醇产率为80%~85%。
  

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