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1)  catalytic hydropyrolysis
催化加氢热解
1.
A method has been developed for the release and determination of biomarker compounds in the covalently bound biomarkers of higher evolution sedimentary organic matters by catalytic hydropyrolysis HYPY/GC-MS.
针对地质体中高演化沉积有机质,应用催化加氢热解/气相色谱-质谱方法测定了干酪根中以共价键结合的生物标志物。
2.
Release of biomarkers combined by covalently bound via catalytic hydropyrolysis from the higher evolved organic sediment and the reaction mechanism of hydropyrolysis of kerogen were studied, while the key variables effecting product distributions were also investigated.
采用催化加氢热解技术提取了高演化沉积有机质中共价键结合生物标志物,探讨了干酪根催化加氢热解反应机理,考察了产物分布和影响反应的关键变量。
2)  non catalytic hydropyrolysis
非催化加氢热解
1.
The non catalytic hydropyrolysis of Chinese coals and process desulphurization/denitrogenation were systematically investigated.
系统考察了煤非催化加氢热解反应特性及过程脱硫脱氮效应,通过调整工艺条件,煤加氢热解的焦油收率视煤种不同可高达50%~70%,占煤热解总转化率的70%~80%,表现出很高的选择性,而不同煤种热解过程的氢利用效率对氢压的变化均存在一个峰值压力。
3)  catalytic hydropyrolysis technology
催化加氢热解技术
1.
Release of biomarkers from sedimentary organic matter with catalytic hydropyrolysis technology;
利用催化加氢热解技术提取沉积有机质中生物标志化合物
4)  hydropyrolysis
加氢催化裂解
1.
Study on the application of hydropyrolysis technique to the description of organic matter in highly mature source rocks;
加氢催化裂解技术用于高演化源岩有机质表征研究
5)  catalytic hydrogenolysis
催化氢解
1.
The new route starts from(2S,3R)-N-Cbz-3-amino-1-chloro-4-phenyl-butan-2-ol,and the target compound is obtained through five reactions such as epoxidation reaction,Hinsburg reaction,catalytic hydrogenolysis and ammonolysis reaction.
以(2S,3R)-N-苄氧羰基-3-氨基-1-氯-4-苯基-2-丁醇为起始原料,经过环氧化、开环取代、胺的酰化、催化氢解还原、胺解等五步反应生成最终产物安普那韦。
2.
The recent studies of the ruthenium catalytic hydrogenolysis of the superfluous glycerol which is the by-product of biodiesel processes to 1,2-propanediol,1,3-propanediol,ethyleneglycol and some other high value-added products are preliminarily reviewed.
综述了近年来以Ru为催化剂,催化氢解生物柴油过剩副产物甘油制1,2-丙二醇、1,3-丙二醇和乙二醇等高附加值产品的研究进展。
6)  hydrogenation [,haidrədʒə'neiʃən]
催化加氢
1.
Study on the Hydrogenation of Acetophenone Catalyzed by Ni-B/SiO_2 Amorphous Catalyst;
Ni-B/SiO_2非晶态催化剂对苯乙酮的催化加氢研究
2.
Advance in the synthesis of p-aminophenol with the catalytic hydrogenation of nitrobenzene;
硝基苯催化加氢制对氨基苯酚的合成工艺研究进展
3.
Thermoregulated Ionic Liquid Biphasic System and the Application in the Hydrogenation of Olefins;
温控离子液体两相体系及其在烯烃催化加氢中的应用
补充资料:催化加氢
分子式:
CAS号:

性质:又称催化加氢,一般是指烯烃、炔烃或双烯烃等不饱和烃在催化剂作用下加氢形成饱和烃的过程。饱和烃化合物也可催化加氢,它在催化剂作用下某些键断裂,同时加氢。有均相与多相催化加氢。均相催化加氢一般使用威尔金森型催化剂RhCl(PPh3)3;多相催化加氢多使用过渡金属及它们的氧化物和硫化物。此外,加氢分解、CO加氢还原合成甲醇,羰基合成以及—NO2,—CN、  C=O  —COOR,—COOH的加氢还原也属于催化氢化。催化剂有铂、钯、雷尼镍、亚铬酸铜等。铂钯催化剂活性高、用量少、反应条件温和;雷尼镍应用最广泛;亚铬酸铜成本低,对醛、酮、酯、酰胺、酰亚胺等含有羰基的化合物有较高的催化活性。近年来新发展的铑、钉、铱等带有各种配位基的均相催化剂,活性高,选择性好,反应条件温和,在常温、常压下就能反应。催化氢化在工业上有广泛的用途。例如:在油脂工业中,可将液态油催化加氢为固态脂肪,生产肥皂和硬化油。

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