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Measurement of Asphaltenes Using Optical Spectroscopy on a Microfluidic Platform

机译:在微流体平台上使用光谱法测量沥青质

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摘要

We present a microfluidic apparatus and method for the measurement of asphaltene content in crude-oil samples. The measurement is based on an optical absorption technique, where it was established that asphaltene coloration correlated linearly with asphaltene weight content. The initial absorbance of the oil is measured, and asphaltenes are removed from the oil by the addition of n-alkane, leading to flocculation and subsequent filtration. The absorbance of the deasphalted oil (maltenes) is then measured, and the initial asphaltene content is revealed by the change in absorbance. The asphaltene optical densities correlated linearly with conventional weight measurement results (e.g., ASTM D6560) for 38 crude-oil samples from around the world. Sample measurement repeatability was shown to be within ±2% over several months. Other aspects influencing performance of the system were evaluated, including plug dispersion, flocculation kinetics, membrane degradation, and channel clogging. The microfluidic approach described here permits asphaltene content measurement in less than 30 min as opposed to days required with traditional gravimetric techniques. This many-fold reduction in measurement time will enable more frequent characterization of crude oil samples.
机译:我们提出了一种用于测量原油样品中沥青质含量的微流体装置和方法。该测量基于光吸收技术,其中确定了沥青质的着色与沥青质的重量含量线性相关。测量油的初始吸光度,并通过添加正构烷烃从油中除去沥青质,从而导致絮凝和随后的过滤。然后测量脱沥青油(麦登)的吸光度,并通过吸光度的变化揭示初始沥青质含量。沥青质的光密度与来自世界各地的38个原油样品的常规重量测量结果(例如ASTM D6560)线性相关。几个月的样品测量重复性显示在±2%以内。评估了影响系统性能的其他方面,包括塞子分散,絮凝动力学,膜降解和通道堵塞。与传统的重量分析技术相比,此处描述的微流体方法可在不到30分钟的时间内测量沥青质含量。测量时间的这种成倍减少将使原油样品的表征更加频繁。

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