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Solids precipitation in crude oils, gas-to-liquids and their blends.

机译:原油,气液及其混合物中的固体沉淀。

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Gas-to-liquids (GTL) liquids are obtained from syngas by the Fischer-Tropsch synthesis. The blending of GTL liquids produced from natural gas/coal reserves and crude oils is a possibility in the near future for multiple reasons. Solids precipitation is a major problem in pipelines and refineries leading to significant additional operating costs. The effect of the addition of a paraffinic GTL liquid to crude oils on solids precipitation was investigated in this study.; A Fourier transform infrared (FT-IR) spectroscopic technique was used to obtain solid-liquid equilibria (SLE) data for the various samples. The SLE of multiple systems of model oils composed of n-alkanes was investigated preliminarily. Blends of a model oil simulating a GTL liquid composition and a crude oil showed that the wax precipitation temperature (WPT) decreased upon blending. Three crude oils from different geographic regions (Alaskan North Slope, Colorado and Venezuela) and a laboratory-produced GTL liquid were used in the preparation of blends with five different concentrations of the GTL liquid. The wax precipitation temperatures of the blends were found to decrease with the increasing addition of the GTL liquid for all the oils. This effect was attributed to the solvent effect of the low molecular weight-paraffinic GTL liquid on the crude oils. The weight percent solid precipitated that was estimated as a function of temperature did not show a uniform trend for the set of crude oils. The asphaltene onset studies done on the blends with near-infrared spectroscopy indicated that the addition of GTL liquid could have a stabilizing effect on the asphaltenes in some oils. Analytical techniques such as distillation, solvent separation, HPLC, GC, and GPC were used to obtain detailed composition data on the samples. Two sets of compositional data with 49 and 86 pseudo-components were used to describe the three crude oils used in the blending work. The wax precipitation was calculated using a thermodynamic model based on a modified regular solution theory. A study was done to test the sensitivity of the thermodynamic model to varying levels of crude oil characterization input data for a fourth crude oil sample. The differentiation of the solute fraction (C25+) into the normal alkane, non-n-alkane and the aromatic fractions was found to be important for improving the predictive accuracy of the model. The n-alkane and non-n-alkane distribution used in the modeling of wax precipitation for the three crude oils blended with the GTL liquid gave the WPT's that agreed to within 5% of the experimental values. The precipitated solid amounts were overestimated using this method.
机译:气液(GTL)液体是通过费-托合成法从合成气中获得的。由于多种原因,在不久的将来有可能将天然气/煤储量生产的GTL液体与原油混合。固体沉淀是管道和精炼厂的主要问题,导致大量额外的运营成本。在这项研究中,研究了向原油中添加链烷烃GTL液体对固体沉淀的影响。傅里叶变换红外(FT-IR)光谱技术用于获得各种样品的固液平衡(SLE)数据。初步研究了由正构烷烃组成的多种模型油系统的SLE。模拟GTL液体组成的模型油与原油的混合物显示,共混后蜡的沉淀温度(WPT)降低。三种不同地理区域(阿拉斯加北坡,科罗拉多州和委内瑞拉)的原油和实验室生产的GTL液体用于制备具有五种不同浓度的GTL液体的混合物。发现对于所有油,随着GTL液体的添加增加,共混物的蜡沉淀温度降低。该作用归因于低分子量链烷烃GTL液体对原油的溶剂作用。随温度而变的固体沉淀物的重量百分数对于这组原油没有显示出一致的趋势。用近红外光谱对共混物进行的沥青质起爆研究表明,添加GTL液体可能对某些油中的沥青质具有稳定作用。分析技术(例如蒸馏,溶剂分离,HPLC,GC和GPC)用于获取样品的详细组成数据。使用两组具有49和86个假组分的成分数据来描述调和工作中使用的三种原油。蜡的沉淀是使用热力学模型基于修正的规则溶液理论计算的。进行了一项研究,以测试热力学模型对第四个原油样品的不同水平的原油表征输入数据的敏感性。发现将溶质级分(C25 +)分为正构烷烃,非正构烷烃和芳烃馏分对于提高模型的预测准确性非常重要。在与GTL液体混合的三种原油的蜡沉淀模型中使用的正构烷烃和非正构烷烃分布得出的WPT值在实验值的5%之内。使用此方法高估了沉淀的固体量。

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