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实沸点蒸馏前后高酸重质原油的石油酸分布表征
引用本文:Liu Yingrong,Zhang Qundan,Wang Wei,Liu Zelong,Zhu Xinyi,Tian Songbai. 实沸点蒸馏前后高酸重质原油的石油酸分布表征[J]. 中国炼油与石油化工, 2014, 16(1): 8-12
作者姓名:Liu Yingrong  Zhang Qundan  Wang Wei  Liu Zelong  Zhu Xinyi  Tian Songbai
作者单位:中国石化石油化工科学研究院
基金项目:financially supported by the National Key Basic Research Development Program “973” Project (2006CB202501)
摘    要:The molecular transformations of carboxylic acids in heavy acidic SL crude before and after true boiling point distillation were examined by ultra-high resolution negative-ion electrospray ionization (ESI) Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS). The acid class (heteroatom number), type (z numbers) and carbon number distributions were positively characterized. It was found out that the total acid number (TAN) of SL crude decreased after true boiling point distillation, and the abundance of O2 class in mass spectra was also found to be reduced from 67.6% to 34.5% in SL TBP mixed crude as measured by MS spectra, indicating to a potential carboxylic acid decomposition. However, it was interesting that the carboxylic acids type distribution in both oils was almost the same although their relative abundance in SL TBP mixed crude turned to be much lower, suggesting that various petroleum carboxylic acid types have the similar thermal decomposition reaction behavior. Furthermore, for each O2 type of acids in SL TBP mixed crude, the abundance of carboxylic acids with carbon number higher than 35 was reduced greatly, especially for those with carbon number higher than 60, the mass peaks of which were nearly totally removed, indicating that the large carboxylic acid molecules in heavy fractions decomposedmore significantly because of longer heating time during the true boiling point distillation process. As a result, the reduction ofTAN may be caused by the thermal decomposition of carboxylic acids especially those with high carbon number, suggesting that quick distillation or much lower pressure is required to avoid the thermal decomposition.

关 键 词:实沸点蒸馏  ESI  FT-ICR MS  石油酸  高酸原油  

Changes of Petroleum Acid Distribution Characterized by FT-ICR MS in Heavy Acidic Crude Oil after True Boiling Point Distillation
Liu Yingrong Zhang Qundan Wang Wei Liu Zelong Zhu Xinyi Tian Songbai. Changes of Petroleum Acid Distribution Characterized by FT-ICR MS in Heavy Acidic Crude Oil after True Boiling Point Distillation[J]. China Petroleum Processing and Petrochemical Technology, 2014, 16(1): 8-12
Authors:Liu Yingrong Zhang Qundan Wang Wei Liu Zelong Zhu Xinyi Tian Songbai
Affiliation:Research Institute of Petroleum Processing, SINOPEC
Abstract:The molecular transformations of carboxylic acids in heavy acidic SL crude before and after true boiling point distillation were examined by ultra-high resolution negative-ion electrospray ionization(ESI) Fourier transform ion cyclotron resonance mass spectrometry(FT-ICR MS). The acid class(heteroatom number), type(z numbers) and carbon number distributions were positively characterized. It was found out that the total acid number(TAN) of SL crude decreased after true boiling point distillation, and the abundance of O2 class in mass spectra was also found to be reduced from 67.6% to 34.5% in SL TBP mixed crude as measured by MS spectra, indicating to a potential carboxylic acid decomposition. However, it was interesting that the carboxylic acids type distribution in both oils was almost the same although their relative abundance in SL TBP mixed crude turned to be much lower, suggesting that various petroleum carboxylic acid types have the similar thermal decomposition reaction behavior. Furthermore, for each O2 type of acids in SL TBP mixed crude, the abundance of carboxylic acids with carbon number higher than 35 was reduced greatly, especially for those with carbon number higher than 60, the mass peaks of which were nearly totally removed, indicating that the large carboxylic acid molecules in heavy fractions decomposed more significantly because of longer heating time during the true boiling point distillation process. As a result, the reduction of TAN may be caused by the thermal decomposition of carboxylic acids especially those with high carbon number, suggesting that quick distillation or much lower pressure is required to avoid the thermal decomposition.
Keywords:true boiling point distillation  carboxylic acid  ESI  FT-ICR MS  acidic crude  total acid number(TAN)
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