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组成显式蒸馏曲线技术:关联复杂流体的化学分析和物理性质。

The composition-explicit distillation curve technique: Relating chemical analysis and physical properties of complex fluids.

机构信息

Thermophysical Properties Division, National Institute of Standards and Technology, Boulder, CO, USA.

出版信息

J Chromatogr A. 2010 Apr 16;1217(16):2703-15. doi: 10.1016/j.chroma.2009.11.030. Epub 2009 Nov 17.

Abstract

The analysis of complex fluids such as crude oils, fuels, vegetable oils and mixed waste streams poses significant challenges arising primarily from the multiplicity of components, the different properties of the components (polarity, polarizability, etc.) and matrix properties. We have recently introduced an analytical strategy that simplifies many of these analyses, and provides the added potential of linking compositional information with physical property information. This aspect can be used to facilitate equation of state development for the complex fluids. In addition to chemical characterization, the approach provides the ability to calculate thermodynamic properties for such complex heterogeneous streams. The technique is based on the advanced distillation curve (ADC) metrology, which separates a complex fluid by distillation into fractions that are sampled, and for which thermodynamically consistent temperatures are measured at atmospheric pressure. The collected sample fractions can be analyzed by any method that is appropriate. The analytical methods we have applied include gas chromatography (with flame ionization, mass spectrometric and sulfur chemiluminescence detection), thin layer chromatography, FTIR, corrosivity analysis, neutron activation analysis and cold neutron prompt gamma activation analysis. By far, the most widely used analytical technique we have used with the ADC is gas chromatography. This has enabled us to study finished fuels (gasoline, diesel fuels, aviation fuels, rocket propellants), crude oils (including a crude oil made from swine manure) and waste oils streams (used automotive and transformer oils). In this special issue of the Journal of Chromatography, specifically dedicated to extraction technologies, we describe the essential features of the advanced distillation curve metrology as an analytical strategy for complex fluids.

摘要

对复杂流体(如原油、燃料、植物油和混合废物流)的分析带来了重大挑战,这些挑战主要源于成分的多样性、成分的不同性质(极性、极化率等)以及基质性质。我们最近引入了一种分析策略,该策略简化了许多分析,并提供了将成分信息与物理性质信息联系起来的附加潜力。这一方面可用于促进复杂流体的状态方程开发。除了化学特性化,该方法还能够计算此类复杂多相流的热力学性质。该技术基于先进蒸馏曲线(ADC)计量学,通过蒸馏将复杂流体分离成馏分,然后在大气压下对这些馏分进行热力学一致温度的测量。收集的样品馏分可以用任何合适的方法进行分析。我们应用的分析方法包括气相色谱法(带有火焰离子化、质谱和硫化学发光检测)、薄层色谱法、FTIR、腐蚀性分析、中子活化分析和冷中子瞬发伽马激活分析。到目前为止,我们在 ADC 中使用的最广泛的分析技术是气相色谱法。这使我们能够研究成品燃料(汽油、柴油燃料、航空燃料、火箭推进剂)、原油(包括由猪粪制成的原油)和废油流(用过的汽车和变压器油)。在本期色谱杂志的特刊中,专门用于萃取技术,我们描述了先进蒸馏曲线计量学作为复杂流体分析策略的基本特征。

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