期刊文献+

气相色谱法测定费托合成水相产物中的低碳醇、醛、酮化合物 被引量:7

Determination of low-carbon alcohols,aldehydes and ketones in aqueous products of Fischer-Tropsch synthesis by gas chromatography
下载PDF
导出
摘要 建立了铁基催化剂费托合成反应水相产物中低碳(C1-C8)醇、醛、酮的气相色谱测定方法。对色谱分离条件进行了优化,确立了以乙醇为基准物质并结合各组分校正因子的定量方法;考察了方法的精密度和准确度,并对费托合成反应水相产物样品进行了测定。结果表明,乙醇在不同的含量范围内呈现良好的线性关系,相关系数均大于0.99。费托合成水相产物中的加标回收率在93.4%-109.6%之间,准确性可以满足实际分析的需要。实际费托合成水相产物的分析结果表明,费托合成水相产物中主要的低碳醇、醛、酮的总质量分数约为3%-12%,乙醇含量最高(约为1.7%-7.3%),且正构醇、异构醇和醛酮类化合物所占的总比率依次降低。该方法简单、快速,对费托合成水相产物中重要组分的分析有重要意义。 A method for the determination of low-carbon(C1-C8)alcohols,aldehydes and ketones in aqueous products of Fischer-Tropsch synthesis was developed by gas chromatogra-phy. It included the optimization of separation conditions,the precision and accuracy of deter-mination,and the use of correction factors of the analytes to ethanol for quantification. The aqueous products showed that the correlation coefficients for ethanol in different content ranges were above 0. 99,which means it had good linear correlations. The spiked recoveries in the aqueous samples of Fischer-Tropsch synthesis were from 93. 4% to 109. 6%. The accuracy of the method can satisfy the requirement for the analysis of the aqueous samples of Fischer-Tropsch synthesis. The results showed that the total mass fractions of the major low-carbon alcohols, aldehydes,ketones in aqueous products of Fischer-Tropsch synthesis were about 3%-12%,and the contents of ethanol were the highest( about 1. 7%-7. 3%). The largest share of the total proportion was n-alcohols,followed by isomeric alcohols,aldehydes and ketones were the lowest. This method is simple,fast,and has great significance for the analysis of important components in aqueous products of Fischer-Tropsch synthesis.
出处 《色谱》 CAS CSCD 北大核心 2015年第1期90-95,共6页 Chinese Journal of Chromatography
关键词 气相色谱 低碳醇 低碳醛 低碳酮 费托合成 水相产物 gas chromatography (GC) low-carbon alcohols low-carbon aldehydes low-car- bon ketones Fischer-Tropsch synthesis aqueous products
  • 相关文献

参考文献15

  • 1Ding M Y,Yang Y,Li Y W,et al.Appl Energ,2013,112:1241.
  • 2Zhao H B,Zhu Q J,Gao P Z,et al.Appl Catal A:General,2013,456:233.
  • 3Hamilton N G,Warringham R,Silverwood I P,et al.J Catal,2014,312:221.
  • 4Li J F,Zhang C H,Cheng X F,et al.Appl Catal A:General,2013,464/465:10.
  • 5Schulz H.Appl Catal A:General,1999,186(1/2):3.
  • 6Schulz H.Catal Today,2013,214:140.
  • 7Huff J G A.Ind Eng Chem Fundam,1983,22:258.
  • 8Hackett J P,Gibbon G A.Chromatogr Sci,1989,27:405.
  • 9Snavely K,Subramaniam B.Ind Eng Chem Res,1997,36(10):4413.
  • 10蒋莹,吕蝶,李自运,王尤崎,高滋.费-托合成反应产物的气相色谱法全分析[J].石油学报(石油加工),2011,27(6):935-940. 被引量:10

二级参考文献33

  • 1史亚利,刘京生,蔡亚岐,牟世芬,温美娟.离子色谱法测定高氯、高钠油田回注水中的阴、阳离子及有机酸[J].色谱,2004,22(6):646-649. 被引量:23
  • 2常杰,滕波涛,白亮,张荣乐,陈建刚,相宏伟,李永旺,孙予罕.Co/ZrO_2/SiO_2催化剂F-T合成反应研究[J].天然气化工—C1化学与化工,2005,30(4):1-8. 被引量:3
  • 3常杰,滕波涛,白亮,陈建刚,张荣乐,徐元源,相宏伟,李永旺,孙予罕.Co/ZrO_2/SiO_2催化剂费-托合成反应动力学研究 Ⅱ.动力学模型的构建和回归[J].催化学报,2005,26(10):859-868. 被引量:3
  • 4Anderson R B.Fischer-Tropsch synthesis[M].New York:Academic Press Inc,1984.
  • 5Anderson J R,Boudart M.Catalysis-science and tech-nology[M].The Netherlands:Springer,1981,1:159-256.
  • 6Schulz H.Short history and present trends of Fischer-Tropsch synthesis[J].Applied Catalysis A:General,1999,186 (1-2):3-12.
  • 7Schulz H,Claeys M.Kinetic modelling of Fischer-Tropsch product distributions[J].Applied Catalysis A:General,1999,186(1-2):91-107.
  • 8Disanzo F P,Lane J L,Bergquist P M,et al.Deter-mination of total oxygenates in Fischer-Tropsch liquid products[J].J of Chromatogra,1983,280:101-108.
  • 9Huff J G A,Satterfield C N,Wolf M H.Stirred autoclave apparatus for study of the Fischer-Tropsch synthesis in a slurry bed (2):analytical procedures[J].Ind Eng Chem Fundam,1983,22:258-263.
  • 10Hackett J P,Gibbon G A.Capillary gas chromato-graphic characterization of Fischer-Tropsch liquefac-tion products:on-line analysis[J].Chromatogra Sci,1989,27:405-412.

共引文献27

同被引文献59

引证文献7

二级引证文献14

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