Showing posts with label crude oil. Show all posts
Showing posts with label crude oil. Show all posts

Wednesday, March 15, 2017

Combination of THz Spectroscopy and AM Technique Can be Used to Evaluate Water Content in Crude Oil


http://www.azom.com/news.aspx?newsID=47409

Water content in crude oil is closely related to the prediction of water level of oil well, the evaluation of oil reservoir exploitation and the recovery and development of mining scheme. Therefore, the accurate measurement of water content is significant not only for forecasting the exploiting capacity of an oil field before mining and estimating working status, but also for grading and evaluating oil products.


Producing sample pool using AM technology and the relationship between water content and THz parameters. (Credit: Science China Press)

In order to optimize the production and confirm the security, simple and secure methods have been proposed for detecting the water content in crude oil. Terahertz (THz) radiation is a newly-developed, non-contact and secure method, and can be absorbed by organics and water molecules in different degrees, which has been used to evaluate the quality of oil and oil products.
In the article, coauthored with LiMei Guan, HongLei Zhan, XinYang Miao, Jing Zhu, Kun Zhao, water content in oil-water mixtures from 1.8%-90.6% was measured by using special designed samplers for high-water-content oil which are manufactured by additive manufacturing system. These researchers stated: "water content of oil-water mixtures with high water content is quantitatively characterized by the combination of THz spectroscopy and 3D-printing technology".
The study was published in the journal Science China Physics, Mechanics & Astronomy. The strong absorption of water in the THz range leads to a decrease in SNR (signal-to-noiseratio), applying the additive manufactured samplers, the problem that signals usually affected by the significant signal attenuation can be resolved.
Detailed analysis shows the relationships among THz parameters such as signal peak, time delay, and refractive index as well as absorption coefficient and water content in crude oil. Therefore, these THz parameters can be used to continuously monitor the moisture content.
In summary, the combination of THz spectroscopy and AM technique can be applied in oil characterization, even when the oilfield enters the high-water-bearing period. This combination could be a promising selection for measuring water content of fluid with good accuracy, which in turn could open up a new area of research.

Tuesday, January 10, 2017

Abstract-Characterization of morphology and structure of wax crystals in waxy crude oils by terahertz time-domain spectroscopy



Energy Fuels, Just Accepted Manuscript
DOI: 10.1021/acs.energyfuels.6b02900
Publication Date (Web): January 8, 2017
Copyright © 2017 American Chemical Society


Abstract: The content, morphology and structure of precipitated wax crystals are major factors affecting crude oil rheology. In this paper, model oils obtained by dissolving a realistic mixture of long-chain n-octacosane in diesel fuels were studied using terahertz time-domain spectroscopy (THz-TDS) and microscopy to gain insight into clusters composed of asphaltene and wax with increasing wax content. The fractal dimension was used for quantitative characterization of the morphology and structure of clusters in the model oils. From the measured absorption and extinction coefficients in the THz region, dynamic processes of the clusters in the model oils were analyzed and identified. The extinction coefficient in the THz region strongly depended on the dispersed and aggregated states of the asphaltene and wax crystals. These observations suggest that the aggregation state of the particles in model oils can be monitored with THz-TDS. In the future, THz-TDS technology may be used to effectively analyze particle dispersion or the aggregation state in crude oil, and may thus be useful for rapid assessment of the effect of pour-point depressant on wax crystal aggregates..