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1)  deep hydrodesulfurization
深度加氢脱硫
1.
Influence of organic nitrogen compounds on deep hydrodesulfurization(HDS);
有机含氮化合物对深度加氢脱硫反应的影响
2.
This paper is a review on the development of deep hydrodesulfurization catalysts in three aspects: the research and improvement of carrier,the upswing of common catalyst and the application of new material.
由于环保法规和原油劣质化两方面的因素,深度加氢脱硫技术及相应的催化剂研究成为热点。
3.
Developments in researches for supports of catalysts used in deep hydrodesulfurization of diesel oil,including oxide supports,composite oxide supports,acidic supports,carbon materials etc.
综述了近年来深度加氢脱硫催化剂载体的研究进展,主要介绍了单一氧化物载体、复合氧化物载体、酸性载体以及炭材料等其他载体对深度加氢脱硫催化剂活性的影响。
2)  ultra-deep hydrodesulfuration
超深度加氢脱硫
3)  petroleum ointment drastic hydrogen denitrifying process
加氢深度脱氮
1.
This paper introduces the precise determination of total nitrogen in petroleum ointment drastic hydrogen denitrifying process.
介绍了蜡膏及其加氢深度脱氮过程总氮含量精确定量分析方法。
4)  deep hydrodearomatics
深度加氢脱芳烃
5)  hydrodesulfurization [,haidrə,di:sʌlfjuri'zeiʃən]
加氢脱硫
1.
Influence of quinoline on the selective hydrodesulfurization of FCC gasoline;
喹啉对FCC汽油选择性加氢脱硫的影响
2.
Effect of Co Doping on the Cartalytic Performace of Molybdenum Carbide for Thiophene Hydrodesulfurization;
钴掺杂对碳化钼催化噻吩加氢脱硫性能的影响
3.
Study on transformation of sulfides in the process of deep hydrodesulfurization of diesel;
柴油深度加氢脱硫过程中硫化物转化规律的研究
6)  Hydrodesulfurization(HDS)
加氢脱硫
1.
Commercial application of OCT-M FCC gasoline selective hydrodesulfurization(HDS) technology;
OCT-M催化裂化汽油选择性加氢脱硫技术的工业应用
2.
Preparation of mixed oxides containing titania and their application in hydrodesulfurization(HDS);
TiO_2复合氧化物的制备及其在加氢脱硫中的应用
3.
In order to aid the development of catalysts for hydrodesulfurization(HDS),there has been a strong emphasis in the past on establishing fundamental relationships between the structure of the catalyst and the HDS activity.
为了开发高性能的加氢催化剂,过渡金属硫化物催化剂催化活性相的结构与加氢脱硫性能的关系一直以来是催化研究的热点之一。
补充资料:深度加氢精制
分子式:
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性质:又称加氢处理  hydrotreating  在氢气和催化剂存在下,使油品中的硫、氮、氧等有害杂质分别转变为硫化氢、氨、水而被除去,并使烯烃和二烯烃加氢饱和、芳烃部分加氢饱和,以改善油品的质量。对汽油组分,用于重整原料的精制;对煤油为饱和芳烃,以提高烟点;对催化裂化柴油,为提高十六烷值;对催化裂化原料则是脱硫、氮和改善质量;对渣油则不仅是脱硫还有除去金属。操作条件比一般加氢脱硫苛刻,氢分压一般为2~14MPa、温度300~450℃。

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