氢与其他化合物相互作用的反应过程,通常是在催化剂存在下进行的。加氢反应属还原的范畴。
环戊二烯加氢制环戊烯的工艺条件优化研究 关键词: 环戊二烯;加氢;正交实验[gap=629]Key words: cyclopentadiene;hydrogenation;orthogonal experiment
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... hydrogenator 氢化罐〔或器〕;加氢设备 hydrogenization 加氢(作用) hydrogenized 氢化子的 ...
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...线光电子能谱(XPS),其特征在于该催化剂的FT-IR,吡啶和高分辨率的透射电子显微镜(HR-TEM)研究的形态和酸性的影响加氢(HYD)和加氢裂化(HC)的反应。
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加氢酰化反应 hydroacylation
加氢脱硫 [油气] hydrodesulfurization ; HDS ; HDS hydrodesulfurization ; UDHDS
加氢处理 hydrotreating ; hydroprocessing ; hydrotreatment ; Hydrieren
加氢精制 [油气] hydrofining ; hydrorefining ; hydrotreating ; hydrogenfinishing
加氢裂化 [油气] hydrocracking ; SSOT ; hydrogen cracking ; Unicracking
加氢脱硫过程 hydrodesulfurization ; hydrodesulphurisation
加氢裂解 hydrocracking ; HC ; destructive hydrogenation ; Hydro Cranking
加氢催化剂 Hydrogenation catalyst ; Wilkonson ; Hydroprocessing Catalysts ; hydrogenation catalysts
加氢作用 hydrogenation ; harden
Catalysts for hydrogenation of benzoic acid to chlorine-free benzaldehyde were prepared by co-precipitation method.
运用共沉淀法制备了锌锰复合纳米催化剂,并用于气相催化加氢苯甲酸合成无氯苯甲醛。
参考来源 - 苯甲酸催化加氢制备无氯苯甲醛的中试The tar yield of hydropyrolysis is higher than that of pyrolysis. With increasing the hydrogen pressure, the yield of tar increases greatly.
加氢热解比热解有较高的焦油收率,随氢气压力的增加,焦油的收率大幅度增加。
参考来源 - 神木煤显微组分热解和加氢热解的焦油组成Diethyl acetamidomalonate was made from diethyl malonate. Through nitrosation, hydrogenate reducion, and acylate three steps, the yield surpass 80% for the diethyl malonate.
乙酰氨基丙二酸二乙酯是以丙二酸二乙酯为原料,经过亚硝化,加氢还原及酰化三个步骤合成的。
参考来源 - DLHydrogenation of aromatic heterocyclic rings, benzenic rings and olefin group takes place at the same active site.
吲哚分子中的氮杂环和芳香环与烯烃是在同一活性位进行加氢反应的。
参考来源 - 吲哚在NiW/γThe effect of supports with different properties and pore structures on the catalytic performance of the hydrorefining catalyst for VGO and the effect of impregnation solution and impregnating method on the metal distribution were examined.
考察了不同物化性质及孔结构的载体对重质馏分油加氢精制催化剂性能的影响,以及浸渍液的配制和浸渍方法对金属分布的影响。
参考来源 - 3996重质馏分油加氢精制催化剂的研制 PREPARATION OF HYDROREFINING CATALYST 3996 FOR VACUUM GAS OILTopics related advances in oil refining technologies facing the challenge of low carbon emissions presented in the 108~(th) NPRA Annual Meeting are briefly introduced,including improvements of FCC technology,gasoline components production,ULSD production,distillates hydroprocessing,residue conversion and technologies for the second generation biofuels.
介绍了2010年NPRA年会关注的碳排放问题和主要炼油工艺、催化剂技术进展,包括催化裂化技术、清洁汽油生产技术、超低硫柴油生产技术、馏分油加氢技术、渣油转化技术和第二代生物燃料技术。
参考来源 - 面向低碳排放的炼油技术进展——2010年NPRA年会综述·2,447,543篇论文数据,部分数据来源于NoteExpress
通过加氢,植物脂肪可直接用于替代黄油。
By hydrogenating vegetable fats they can be used as a direct replacement for butter.
在脂肪中加入氢分子,这个加氢的过程改变了脂肪的化学结构。
A hydrogen molecule is then added to the fat. This hydrogenation process alters the chemical structure of the fat.
储存氢的另一方法是在燃料箱中放点东西,增加氢分子能够附着的内表面总面积。
Another way to store hydrogen is to put something inside the tank which increases the total internal surface area to which the molecules of the gas can cling.
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