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2种含氧化合物对固载型Al/Ti双金属α-烯烃聚合催化剂及合成PAO性能的影响 被引量:7
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作者 谭家伦 姜豪 +3 位作者 王丹 孙辉 沈本贤 刘纪昌 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2021年第3期486-497,共12页
以费-托合成油轻组分中所含1-庚醇和1-辛醛为模型化合物,系统研究含氧化合物对固载型Al/Ti双金属α-烯烃聚合催化剂结构、活性及其催化合成聚α-烯烃(PAO)性能的影响。结果表明,经1-庚醇和1-辛醛处理后,催化剂微观形貌、酸性、活性组分... 以费-托合成油轻组分中所含1-庚醇和1-辛醛为模型化合物,系统研究含氧化合物对固载型Al/Ti双金属α-烯烃聚合催化剂结构、活性及其催化合成聚α-烯烃(PAO)性能的影响。结果表明,经1-庚醇和1-辛醛处理后,催化剂微观形貌、酸性、活性组分含量及结合形式均发生变化。随着含氧化合物质量浓度的增加,催化剂的Lewis酸和Bronst酸酸量下降,活性组分Al和Ti相应的Al 2p1/2和Ti 2p3/2结合能增加,Al/Ti摩尔比下降。与此同时,合成PAO的收率、黏度、黏度指数和倾点均降低。当1-辛醛和1-庚醇的质量浓度分别达到500 mg/L时,相对应合成PAO产品的40℃黏度由98.95 mm2/s分别降至54.52 mm2/s和63.38 mm2/s, 100℃黏度由13.20 mm2/s分别降至8.12 mm2/s和9.13 mm2/s,黏度指数由132分别降至119和122,倾点则由-61℃分别降至-66℃和-67℃。 展开更多
关键词 Α-烯烃 催化剂 PAO F-T合成油 含氧化合物
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Comparison on Adsorptive Separation of n-Paraffins Based on Binderless and Binder-containing Zeolite 5A Pellets 被引量:2
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作者 Kong Ruiqi Jiang Hao +8 位作者 Wang Dan tan jialun Ren Danni Sun Hui Shen Benxian Liu Jichang tang Sheng Zhao Deyin Chang Xiaohu 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2019年第4期21-28,共8页
Binderless zeolite is considered to be a potential alternative for binder-containing zeolite in the industrial applications of adsorptive separation process. Synthesized binderless zeolite and commercial binder-contai... Binderless zeolite is considered to be a potential alternative for binder-containing zeolite in the industrial applications of adsorptive separation process. Synthesized binderless zeolite and commercial binder-containing product were used in adsorptive separation of n-paraffins from a model oil, with their performance compared. It is indicated that the binderless zeolite exhibits by 25%-35% higher in saturated adsorption capacity and by 115%-130% more adsorption amount at the breakthrough point with much shorter length of mass-transfer zone. Adsorptive separation of n-paraffins from naphtha was carried out in a fixed-bed adsorber containing the synthesized binderless zeolite 5 A under the operating conditions covering a feed space velocity of 90 h-1 and an adsorption temperature of 573 K. As compared to original naphtha, the raffinate shows by 34 units more in research octane number and by around 10% more of potential aromatic content, while the desorption oil exhibits by 13.3% more ethylene yield and by 11.7% higher in total olefins yield. 展开更多
关键词 binderless zeolite 5A adsorptive separation n-paraffins NAPHTHA
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