Guangyu Sun, Fujun Sheng, Qingyi Li, Chuanxian Li, Fei Yang, Bo Yao
{"title":"CO2处理压力对脱气含蜡原油化学成分及流变性能的影响","authors":"Guangyu Sun, Fujun Sheng, Qingyi Li, Chuanxian Li, Fei Yang, Bo Yao","doi":"10.1021/acsomega.4c08172","DOIUrl":null,"url":null,"abstract":"<p><p>With the gradual application of enhanced oil recovery by CO<sub>2</sub> (CO<sub>2</sub>-EOR), the rheological behavior of produced fluid is altered due to CO<sub>2</sub> dissolution and degassing. This work focuses on the composition, physical properties, gelation and yield characteristics, and viscosity-temperature properties of crude oil containing paraffinic wax after CO<sub>2</sub> treatment. Special attention is given to the effect of the phase state of CO<sub>2</sub>. It is found that the contents of light hydrocarbons (C<sub>9</sub>-) and liquid paraffin (C<sub>9</sub>-C<sub>16</sub>) decrease by 1.24% and 0.89%, respectively, while the contents of paraffin and microcrystalline wax increase by 1.90% and 1.71%, respectively, as the treatment pressure is increased to 25 MPa from atmospheric pressure. Besides, the content of the saturates decreases by 5.31%, while that of the aromatics, resins, and asphaltenes increases by 2.83%, 1.83%, and 0.65%, respectively, due to the extraction effect of CO<sub>2</sub> on light hydrocarbons. In terms of wax precipitation characteristics, the wax appearance temperature (WAT) and wax precipitation content (WPC) increase with increasing pressure. Particularly, when the pressure increases from 5 to 15 MPa, the WAT and WPC increase by 4 °C and 1.27%, respectively, obviously greater than the other conditions due to the phase transition of CO<sub>2</sub>. Moreover, the morphology of the wax crystals becomes tinier after supercritical CO<sub>2</sub> (scCO<sub>2</sub>) treatment because of the increase in the polarity of the crude oil. Likewise, considering the gelation and yield characteristics, the storage modulus, gelation temperature, and yield stress increase more obviously than the other pressure change conditions as the pressure increases from 5 to 15 MPa. All of the above structural enhancements are owing to the effect of CO<sub>2</sub> treatment, especially scCO<sub>2</sub> treatment, on the content and morphology of the precipitated wax crystals. Last, the apparent viscosity/viscosity also increases with the treatment pressure. The viscosity increases by 1.1 to 2.0 times with the pressure increasing from 5 to 15 MPa, again obviously greater than the other pressure change conditions due to the interior structural changes of the crude oil induced by scCO<sub>2</sub> treatment..</p>","PeriodicalId":22,"journal":{"name":"ACS Omega","volume":"9 52","pages":"51337-51348"},"PeriodicalIF":4.3000,"publicationDate":"2024-12-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11696407/pdf/","citationCount":"0","resultStr":"{\"title\":\"Influence of CO<sub>2</sub> Treatment Pressure on the Chemical Composition and Rheological Properties of Degassed Waxy Crude Oil.\",\"authors\":\"Guangyu Sun, Fujun Sheng, Qingyi Li, Chuanxian Li, Fei Yang, Bo Yao\",\"doi\":\"10.1021/acsomega.4c08172\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>With the gradual application of enhanced oil recovery by CO<sub>2</sub> (CO<sub>2</sub>-EOR), the rheological behavior of produced fluid is altered due to CO<sub>2</sub> dissolution and degassing. This work focuses on the composition, physical properties, gelation and yield characteristics, and viscosity-temperature properties of crude oil containing paraffinic wax after CO<sub>2</sub> treatment. Special attention is given to the effect of the phase state of CO<sub>2</sub>. It is found that the contents of light hydrocarbons (C<sub>9</sub>-) and liquid paraffin (C<sub>9</sub>-C<sub>16</sub>) decrease by 1.24% and 0.89%, respectively, while the contents of paraffin and microcrystalline wax increase by 1.90% and 1.71%, respectively, as the treatment pressure is increased to 25 MPa from atmospheric pressure. Besides, the content of the saturates decreases by 5.31%, while that of the aromatics, resins, and asphaltenes increases by 2.83%, 1.83%, and 0.65%, respectively, due to the extraction effect of CO<sub>2</sub> on light hydrocarbons. In terms of wax precipitation characteristics, the wax appearance temperature (WAT) and wax precipitation content (WPC) increase with increasing pressure. Particularly, when the pressure increases from 5 to 15 MPa, the WAT and WPC increase by 4 °C and 1.27%, respectively, obviously greater than the other conditions due to the phase transition of CO<sub>2</sub>. Moreover, the morphology of the wax crystals becomes tinier after supercritical CO<sub>2</sub> (scCO<sub>2</sub>) treatment because of the increase in the polarity of the crude oil. Likewise, considering the gelation and yield characteristics, the storage modulus, gelation temperature, and yield stress increase more obviously than the other pressure change conditions as the pressure increases from 5 to 15 MPa. All of the above structural enhancements are owing to the effect of CO<sub>2</sub> treatment, especially scCO<sub>2</sub> treatment, on the content and morphology of the precipitated wax crystals. Last, the apparent viscosity/viscosity also increases with the treatment pressure. 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Influence of CO2 Treatment Pressure on the Chemical Composition and Rheological Properties of Degassed Waxy Crude Oil.
With the gradual application of enhanced oil recovery by CO2 (CO2-EOR), the rheological behavior of produced fluid is altered due to CO2 dissolution and degassing. This work focuses on the composition, physical properties, gelation and yield characteristics, and viscosity-temperature properties of crude oil containing paraffinic wax after CO2 treatment. Special attention is given to the effect of the phase state of CO2. It is found that the contents of light hydrocarbons (C9-) and liquid paraffin (C9-C16) decrease by 1.24% and 0.89%, respectively, while the contents of paraffin and microcrystalline wax increase by 1.90% and 1.71%, respectively, as the treatment pressure is increased to 25 MPa from atmospheric pressure. Besides, the content of the saturates decreases by 5.31%, while that of the aromatics, resins, and asphaltenes increases by 2.83%, 1.83%, and 0.65%, respectively, due to the extraction effect of CO2 on light hydrocarbons. In terms of wax precipitation characteristics, the wax appearance temperature (WAT) and wax precipitation content (WPC) increase with increasing pressure. Particularly, when the pressure increases from 5 to 15 MPa, the WAT and WPC increase by 4 °C and 1.27%, respectively, obviously greater than the other conditions due to the phase transition of CO2. Moreover, the morphology of the wax crystals becomes tinier after supercritical CO2 (scCO2) treatment because of the increase in the polarity of the crude oil. Likewise, considering the gelation and yield characteristics, the storage modulus, gelation temperature, and yield stress increase more obviously than the other pressure change conditions as the pressure increases from 5 to 15 MPa. All of the above structural enhancements are owing to the effect of CO2 treatment, especially scCO2 treatment, on the content and morphology of the precipitated wax crystals. Last, the apparent viscosity/viscosity also increases with the treatment pressure. The viscosity increases by 1.1 to 2.0 times with the pressure increasing from 5 to 15 MPa, again obviously greater than the other pressure change conditions due to the interior structural changes of the crude oil induced by scCO2 treatment..
ACS OmegaChemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍:
ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.