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Probing the effect of Young's modulus on the plugging performance of micro-nano-scale dispersed particle gels 被引量:1
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作者 Zhi-xuan Zhu Lin Li +4 位作者 Jia-Wei Liu Jia Chen zhong-zheng xu Yi-Ning Wu Cai-Li Dai 《Petroleum Science》 SCIE CAS CSCD 2022年第2期688-696,共9页
The effect of mechanical strength of the dispersed particle gel(DPG)on its macro plugging performance is significant,however,little study has been reported.In this paper,DPG particles with different mechanical strengt... The effect of mechanical strength of the dispersed particle gel(DPG)on its macro plugging performance is significant,however,little study has been reported.In this paper,DPG particles with different mechanical strengths were obtained by mechanical shearing of bulk gels prepared with different formula.Young’s moduli of DPG particles on the micro and nano scales were measured by atomic force microscope for the first time.The mapping relationship among the formula of bulk gel,the Young’s moduli of the DPG particles and the final plugging performance were established.The results showed that when the Young’s moduli of the DPG particles increased from 82 to 328 Pa,the plugging rate increased significantly from 91.46%to 97.10%due to the distinctly enhanced stacking density and strength at this range.While when the Young’s moduli of the DPG particles surpassed 328 Pa,the further increase of plugging rate with the Young’s moduli of the DPG particles became insignificant.These results indicated that the improvement of plugging rate was more efficient by adjusting the Young’s moduli of the DPG particles within certain ranges,providing guidance for improving the macroscopic application properties of DPG systems in reservoir heterogeneity regulation. 展开更多
关键词 Dispersed particle gel Mechanical strength Young’s modulus Atomic force microscope Plugging performance
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Quantitatively probing interactions between membrane with adaptable wettability and oil phase in oil/water separation 被引量:1
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作者 zhong-zheng xu Ming-Wei Zhao +6 位作者 Yi-Ning Wu Jia-Wei Liu Ning Sun Zi-Zhao Wang Yi-Ming Zhang Lin Li Cai-Li Dai 《Petroleum Science》 SCIE EI CAS CSCD 2023年第4期2564-2574,共11页
The membrane method based on adaptive wettability shows great advantages in oil-water separation.At present,researches focus on the excellent application performance of the membrane material,while the quantitative ana... The membrane method based on adaptive wettability shows great advantages in oil-water separation.At present,researches focus on the excellent application performance of the membrane material,while the quantitative analysis of interactions in oil-water separation is rarely recognized.Herein,we constructed an adaptable wettability membrane with multiple polymer networks by polydopamine(PDA)and mussel-inspired amphiphilic polymer.Based on the Owens three-probe liquid method,the surface energy of the modified membrane was verified to meet the adaptive wettability conditions,with surface energies(γ-8)of 147.6 mJ m^(−2)(superhydrophilic/underwater superoleophobic)and 49.87 mJ m^(−2)(superhydrophobic/superoleophobic),respectively.The adhesion or repulsion of the membrane to the oil phase under different conditions during the separation process was quantified by the chemical probe AFM technique.In addition,the oil-water selective separation mechanism was further analyzed in a simplified membrane microchannel model.The results show that the different wetting produces capillary additional pressure in opposite directions,resulting in different energies to be overcome when the oil or water passes through the microchannels,thus achieving selective separation. 展开更多
关键词 Adaptable wettability Selective oil/water separation Interface interaction Probe AFM technique
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