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高硅沸石催化剂的一种新催化反应性能——烷烃裂解和烯烃叠合协同反应及其应用 被引量:2
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作者 赵毓璋 王中南 《石油学报(石油加工)》 EI CAS CSCD 北大核心 1992年第4期47-54,共8页
本研究发现了高硅沸石僵化剂的一种新的催化反应性能,即烷烃裂解和烯烃叠合的协同反应。试验所用高硅沸石催化剂的SiO_2/Al_2O_3比为23.6~300。NH_3-TPD测定的相应酸性中心数大约为2.55~0.45×10^(20)个/g,酸强度分布随硅铝比不... 本研究发现了高硅沸石僵化剂的一种新的催化反应性能,即烷烃裂解和烯烃叠合的协同反应。试验所用高硅沸石催化剂的SiO_2/Al_2O_3比为23.6~300。NH_3-TPD测定的相应酸性中心数大约为2.55~0.45×10^(20)个/g,酸强度分布随硅铝比不同和水蒸气处理强度不同而变化。试验研究了协同反应的主要特点并探讨了反应机理,简要介绍了协同反应的工业应用,即DSCOP过程。 展开更多
关键词 高硅沸石 催化剂 熔烃 裂解 烯烃
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负载型丝光沸石催化剂的催化性能研究 被引量:1
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作者 柴章民 李承烈 +2 位作者 黄国雄 盛世善 徐奕德 《华东化工学院学报》 CSCD 1993年第6期681-686,共6页
运用二元碱氮置换吸附红外光谱法、分子筛孔径分布测定技术、XPS技术,考察了丝光沸石表面酸性与孔结构的相互关系、钯在丝光沸石上分布情况和价态及其与沸石的相互作用。结果表明,随着丝光沸石脱铝程度的增加,表面出现大量不规整晶格,... 运用二元碱氮置换吸附红外光谱法、分子筛孔径分布测定技术、XPS技术,考察了丝光沸石表面酸性与孔结构的相互关系、钯在丝光沸石上分布情况和价态及其与沸石的相互作用。结果表明,随着丝光沸石脱铝程度的增加,表面出现大量不规整晶格,存在较多的次级孔道。强质子酸中心主要分布在它的“外表面”。钯在其表面富集,并与“外表面”上的质子酸中心协同作用,促进了轻质烷烃异构化反应。 展开更多
关键词 沸石 孔分布 催化剂 熔烃 汽油
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Catalytic Cracking of Polyolefins in the Molten Phase——Basic Study for the Process Development of Waste Plastics Liquefaction
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作者 Haruki Tani Kaoru Fujimoto 《Journal of Environmental Science and Engineering(B)》 2017年第7期352-361,共10页
The cracking of polyolefins, especially polyethylene in the molten state was effectively catalyzed by the powdery spent FCC (Fluid Catalytic Cracking) catalyst which was dispersed in it. The activation energy of the... The cracking of polyolefins, especially polyethylene in the molten state was effectively catalyzed by the powdery spent FCC (Fluid Catalytic Cracking) catalyst which was dispersed in it. The activation energy of the catalytic cracking of polyethylene was about 74 kJ/mol. The cracked product was naphtha and middle distillate as the major product and gaseous hydrocarbon (C1-C4) as the minor product while little heavy oil was produced. The chemical compositions of the product were: aromatic hydrocarbons, isoparaffins and branched olefins, whereas that of the non-catalyzed products were: n-olefins and n-paraffins with minor amount of dienes with increasing the process time. Additionally, the product pattern shifted from naphtha rich product to kerosene and gas-oil rich product. However, any catalytic product showed low fluid point (〈 -10 ℃), while that of the non-catalyzed product was as high as 40 ℃. Catalyst could process, more than 100 times by weight of polyethylene with fairly small amount (- 30 wt%) of coke deposition. Spent catalyst gave higher hydrocarbons while fresh catalyst gave gaseous product as the major product. Other polyolefins such as polypropylene and polystyrene were tested on same catalyst to show that their reactivity is higher than that of polyethylene and gave the aliphatic products, alkyl benzenes and C6-C9 iso-paraffins as the major product. Product pattern of the cracked product suggested that the reaction proceeded via the primary reactions making paraffins and olefins which were followed by the isomerization, secondary cracking, aromatization and hydrogen transfer which based on the carbenium ion mechanism. 展开更多
关键词 POLYOLEFIN spent FCC (Fluid Catalytic Cracking) catalyst catalytic cracking carbenium ion mechanism superiorstability.
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