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1)  C_ 10 alkene
碳十烯烃
1.
This paper states a development of C_ 11 Aliphatic Alcohol by carbonyl synthesis, which feed C_ 10 alkene as the raw material.
碳十烯烃为原料 ,用羰基合成方法研制碳十一脂肪醇 ,通过考察催化剂配比、温度、压力等因素对反应的影响 ,确定了最佳工艺参数。
2)  C_(10) aromatics
碳十芳烃
1.
The selection for design scheme,the simulation and calculation for process,and the modification for flow process were conducted to remedy the insufficiency of materials,the imported heavy aromatics with C_9 and C_(10) aromatics as chief components,containing different components and wide distillation range,were used as materials,having produced successfully eligible 1,2,4- and 1.
为弥补原料不足,加工组分和馏程变化较大的、以碳九、碳十芳烃为主要成分的重芳烃宽馏分进口原料,经方案选择、工艺模拟计算及流程改进,成功地生产了偏三甲苯与富集均三甲苯工业产品。
3)  light olefins
低碳烯烃
1.
Advances in process research on coal or natural gas to light olefins via methanol;
煤或天然气经甲醇制低碳烯烃工艺研究新进展
2.
Single-tube scaleup tests on direct conversion of syngas to light olefinsⅡ. Studies of catalyst properties;
合成气直接制取低碳烯烃单管扩大试验——Ⅱ.催化剂性的研究
3.
Single tube scaleup tests on direct conversion of syngas to light olefins Ⅲ. studies of regenerated catalyst properties;
合成气直接制取低碳烯烃的单管扩大试验Ⅲ.催化剂再生性能研究
4)  light olefin
低碳烯烃
1.
Conversion of fluid catalytic cracking gasoline to light olefins and high octane number gasoline;
利用流化催化裂化汽油生产低碳烯烃联产高辛烷值汽油
2.
The results indicated that coal and heavy oil co-gasification can produce light olefins and synthesis gas,the content of light olefins(C2H4+ C3H6)is more than 15%,the content of synthesis gas(H2 + CO)is no less than 60%,and the content of carbon d.
结果表明,煤与重质油共气化技术可以制备低碳烯烃并联产合成气,低碳烯烃(C2H4+C3H6)含量大于15%,合成气(H2+CO)含量大于60%,CO2含量小于1。
3.
The demonstration showed that GOR-Ⅲcatalyst produced the highest hydrocarbon and light olefins yields.
实验表明,烃和低碳烯烃产率在GOR-Ⅲ上最高。
5)  higher olefin
高碳烯烃
6)  light alkenes
低碳烯烃
1.
The study of the effect of coupling reaction on light alkenes synthesis from CO_2 hydrogenation
CO_2加氢制低碳烯烃反应中引入耦合反应的影响研究
2.
Effects of different MgO supports on FeMn based catalysts for light alkenes synthesis
不同MgO载体对合成低碳烯烃用铁锰基催化剂的影响
3.
The effect of iron content on Fe-Mn/MgO catalysts for light alkenes synsthesis by CO hydrogenation was investigated and characterized by BET,XRD and H2-TPR techniques.
采用共浸渍法制备了不同Fe含量的FeMn/MgO催化剂,以CO加氢合成低碳烯烃为模型反应对催化剂的反应性能进行了考察,并借助X射线物相分析、N2物理吸附、程序升温还原等测试手段对催化剂进行了表征。
补充资料:十碳醇
分子式 C10H22O
结构式 CH3(CH2)8CH2OH
    又名十碳醇、壬基甲醇。无色粘稠液体。分子量158.28。密度0.8297g/cm3。熔点7℃。沸点232.9℃。闪点5℃。折射率1.4378。几乎不溶于水。以l: 3溶于60%乙醇中。溶于大多数有机溶剂。具有类似玫瑰香及橙花香,又似带甜味的香气,并具有淡淡的特有的油脂气味。
    生产方法:主要采用加压氢化法。以椰子油为原料,在混合氧化物存在下,经高温加压氢化,再经减压分馏而得。
    用途:醇类合成香料。主要用于日用化妆香精及香皂等化妆品。用作玫瑰型花香精油的调合香料,是C8-C18醇类合成香料的重要品种。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条