期刊文献+

连续式FCC汽油萃取-光催化氧化深度脱硫 被引量:5

CONTINUOUS DEEP DESULFURIZATION TECHNOLOGY BY EXTRACTION-PHOTOCATALYSIS-OXIDATION FOR FCC GASOLINE
下载PDF
导出
摘要 采用连续式萃取-光催化深度脱硫工艺对FCC汽油进行精制,采用硫氮荧光分析仪和GC-PFPD测定精制油中硫含量,考察了萃取条件和光催化反应条件对其脱硫效果的影响。从实验结果得到,萃取操作的适宜条件为常压、萃取温度30℃、溶剂/油质量比为1~1.2;光催化反应操作的适宜条件为反应温度30~40℃、反应时间1h、氧化剂用量3%(质量分数)。在上述操作条件下,FCC汽油精制油中硫质量分数为40.5μg/g,达到欧Ⅳ标准,精制油收率超过95%,且精制前后油品的物性基本没有变化。 By using continuous extraction-photocatalysis-oxidation desulfurization process, the removal of sulfur-containing compounds from FCC gasoline was carried out. The sulfur contents in FCC gasoline before and after desulfurization were determined by means of Atnek analyzer and GC-PFPD. The effects of extraction and photocatalysis-oxidation conditions on the removal of sulfur-containing compounds from FCC gasoline were investigated. The experiment results showed that the suitable operation conditions of extraction process included normal atmosphere, temperature of 30℃ and mass ratio of solvent to oil in the range of 1-1.2; suitable reaction conditions included temperature of 30-40℃, resident time of 1 h, mass fraction of oxidant of 3 %. Under those conditions, the mass fraction of sulfur in refining oil reduced to 40. 5 μg/g, which meets Europe Ⅳ standard, and the refining oil yield was above 95%. The physico-chemical properties of the refining oil were the same as that before desulfurization.
出处 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2008年第5期569-574,共6页 Acta Petrolei Sinica(Petroleum Processing Section)
关键词 连续工艺 萃取 光催化氧化 脱硫 continuous technology abstract photocatalysis-oxidation desulfurization
  • 相关文献

参考文献9

  • 1李大东.21世纪的炼油技术与催化[J].石油学报(石油加工),2005,21(3):17-24. 被引量:67
  • 2赵野,王刚,谭明伟.国外清洁燃料技术进展[J].石化技术,2005,12(4):56-61. 被引量:5
  • 3IBRAHIM A I, SHEN B X, ZHOU W. Desulfurization of FCC gasoline by solvent extraction and photooxidation [J]. Petroleum Science and Technology, 2003, 21(9):1555-15731.
  • 4ZANNIKOS F. Desulfurization of petroleum fractions by oxidation and solvent extraction [J]. Fuel Process Technology, 1995, 42(3): 35-45.
  • 5OTSUKI S, NONAKA T, TAKASHIMA N, et al. Oxidative desulfurization of light gas oil and vacuum gas oil by oxidation and solvent extraction[J]. Energy and Fuels, 2000, 14(6): 1232-1239.
  • 6FUJISHIMA A, HONDA K. Electrochemical photolysis of water at semi-conductor electrode[J]. Nature, 1972, 238(2) : 37-38.
  • 7ABDEL-WAHAB A M A, GABER A E A M. TiO2- photocatalytic oxidation of selected heterocyclic sulfur compounds [J]. Journal of Photo-Chemistry and Photobiology A: Chemistry, 1998, 114(3): 213-218.
  • 8MATSUZAWA S, TANAKA J, SAT S, et al. Photocatalytic oxidation of di-benzothiophenes in acetonitfile using TiO2: Effect of hydrogen perode and ultrasound irradiation[J]. Journal of Photochemistry and Photohiology A: Chemistry, 2002, 149(1): 183-189.
  • 9SHIRAISHI Y, TACHIBANA K, HIRAI T, et al. Photochemical production of bi-phenyls from oxidized sulfur compounds obtained by oxidative desulfurization of light oils[J]. Energy Fuels, 2003, 17(2): 95-100.

二级参考文献33

  • 1李大东.炼油催化发展趋势[J].石油炼制与化工,1994,25(1):7-14. 被引量:8
  • 2Ricardo P S. Clean-fuels initiatives push refining construction projects[J]. Oil & Gas Journal, 2004, 102 (16): 58-65.
  • 3Paul F, Meier. S Zorb Gasoline Sulfur Removal Technology-Optimized Design. NPRA, AM-04-14, 2004.
  • 4Panka J H,Desai. Low Cost Production of Clean Fuels with STARS Catalyst Technology. NPRA, AM-99-40, 1999.
  • 5Steve Mayo, Bob Leliveld, Frans Plantenga, et al. Elegant Solutions for Ultra Low Sulfur Diesel. NPRA, AM-01-09, 2001.
  • 6Reid T, Kunz K, Mayo S,et al. Off-Setting the Cost of Ultra Low Sulfur Diesel. NPRA, AM-04-55, 2004.
  • 7Steven W, Mayo Brevoord E , Frans Plantenga ,et al. NEBULATM Catalyst Provides Proven Economic Returns. NPRA,AM-05-14, 2005.
  • 8Tom Tippett. Ultra Low Sulfur Diesel:Catalyst and Processing Options. NPRA, AM-99-06, 1999.
  • 9Alain Lamourelle P, Douglas Nelson, Jerry McKnight, et al.Clean Fuels:Route to Low Sulfur Low Aromatic Diesel. NPRA,AM-01-28, 2001.
  • 10Shifle W. The Drive to Lower and Lower Sulfur: Criterion's New Catalyst Help Refiners Tackle Sulfur. NPRA,AM-01-29,2001.

共引文献69

同被引文献98

引证文献5

二级引证文献15

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部