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- W2073162787 abstract "Abstract Wax and asphaltene precipitation have caused many problems in the petroleum industry. One of the ways to mitigate the problems is to have a model that can predict the conditions at which the precipitation occurs and the amount of solids precipitated. Several models have been proposed in the past. However, the models are for either wax or asphaltene precipitation. Moreover, the previously proposed models usually involve the use of fitting parameters to match the calculated results to the experimental values. The incorporation of fitting parameters limits the predictive capability of the models. Therefore, it is useful to have a predictive model that can describe the precipitation of both wax and asphaltene. In addition to modeling, crude oil characterization is also important. Experimental data are needed for input to the model and for model validation. Hence, this study has focused on both experimental techniques for crude oil characterization and the modeling of solid precipitation from crude oils. This article will discuss the capability of a thermodynamic model, which uses regular solution theory to describe the precipitation of both wax and asphaltene at different conditions. The data for the model input were obtained using experimental techniques such as TBP distillation, solvent extraction, HPLC, HTGC, SEC, and RI measurement. A discussion on using the model for description of the solids precipitation caused by the addition of n-alkane to the crude oil will also be presented." @default.
- W2073162787 created "2016-06-24" @default.
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- W2073162787 date "2004-01-02" @default.
- W2073162787 modified "2023-09-27" @default.
- W2073162787 title "Crude Oil Characterization and Regular Solution Approach to Thermodynamic Modeling of Solid Precipitation at Low Pressure" @default.
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- W2073162787 doi "https://doi.org/10.1081/lft-120038721" @default.
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