教育背景:
1992-1996,華東理工大學(xué),有機(jī)化工,學(xué)士;
1996-1999,華東理工大學(xué),化學(xué)工程,碩士;
1999-2002,華東理工大學(xué),化學(xué)工程,博士。
工作經(jīng)歷:
2002.9-2004.8,華東理工大學(xué)化工學(xué)院助研;
2004.9-2005.8,華東理工大學(xué)化工學(xué)院副研究員;
2005.9-2006.8,法國(guó)Polytech’lille,博士后;
2006.9-2012.8,華東理工大學(xué)化工學(xué)院副研究員;
2012.9-至今,華東理工大學(xué)化工學(xué)院教授。
研究方向:
1. 聚合物改性及發(fā)泡工程化研究
針對(duì)聚合物發(fā)泡,通過(guò)傳遞過(guò)程結(jié)合聚合物流變學(xué)建立氣泡生長(zhǎng)模型,研究聚合物分子結(jié)構(gòu)、粘彈性以及工藝過(guò)程對(duì)氣泡生長(zhǎng)行為的作用機(jī)制,指導(dǎo)發(fā)泡聚合物分子結(jié)構(gòu)設(shè)計(jì),優(yōu)化聚合物發(fā)泡工程化過(guò)程中的工藝調(diào)控。
2. 高內(nèi)相CO2/水乳液構(gòu)建及其驅(qū)油應(yīng)用
研究表面活性劑、聚合物和納米顆粒多組分復(fù)配體系協(xié)同構(gòu)建高內(nèi)相CO2/水乳液的作用機(jī)制,通過(guò)實(shí)驗(yàn)結(jié)合分子模擬分析乳液主體相與界面性質(zhì),獲得影響乳液穩(wěn)定性的關(guān)鍵因素,篩選乳液體系應(yīng)用于油藏巖心驅(qū)替過(guò)程。
3. 提高油藏采收率的傳遞過(guò)程研究
針對(duì)油藏基質(zhì)孔隙、微裂縫和壓裂裂縫的分析表征結(jié)合分形理論描述,定量致密巖心多孔介質(zhì),結(jié)合物質(zhì)敏感性、壓力敏感性研究以及邊界層理論和滲吸機(jī)理,建立關(guān)于孔隙-裂縫結(jié)構(gòu)的流體流動(dòng)數(shù)學(xué)模型,耦合油藏?cái)?shù)值模擬,構(gòu)建基于體積單元孔隙結(jié)構(gòu)特征的油藏?cái)?shù)值模擬方法,為油藏開(kāi)采和后期提高采收率提供理論支持。
近期代表性論文
1. Biao Xu, Jiuqing Li, Haiyang Li, Weiyu Bi*, Jingyi Yang, Tao Liu*. Thermal stability enhancement and enhanced oil recovery mechanisms of polymer-regulated high internal phase CO2-in-water foams. Chemical Engineering Journal 527 (2026) 172105.
2. Jiuqing Li, Biao Xu, Lin Zhu, Xiujuan He, Jingyi Yang, Yingcheng Li*, Tao Liu*. Mechanism of polymer regulated high internal phase CO2-in-water foam viscoelasticity for enhanced oil recovery. Fuel 384 (2025) 134050.
3. Biao Xu, Jiuqing Li, Lin Zhu, Junyan Xu, Runze Wang, Shun Li, Jiajia Fu, Jingyi Yang, Tao Liu*. Effect of wall slip of CO2-in-water foams on enhanced oil recovery. Chemical Engineering Journal 503 (2025) 158295.
4. Biao Xu, Yu Yang, Wanghong Long, Jingyi Yang, Tao Liu*. Mechanism of plugging high permeability core and decreasing reservoir heterogeneity with ultra-dry CO2-in-water foam. Fuel 364 (2024) 131148.
5. Jiawei Zheng, Jiawei Lu, Zhengxiang Yang, Tao Liu*. Fabrication of recyclable and biodegradable PBAT vitrimer via construction of highly dynamic cross-linked network. Polymer Degradation and Stability 219 (2024) 110602.
6. Wanghong Long, Yu Yang, Jingyi Yang, Tao Liu*. Mechanism of enhanced oil recovery of ultra-dry CO2-in-water foams in porous media: Experiments and numerical simulation. Fuel 350 (2023) 128763.
7. Jiawei Lu, Yukai Ge, Tao Liu*. The influence of dynamic crosslinked topology and bond exchange on thermal properties, viscoelasticity, and foaming behavior of multibranched TPEE vitrimer. Polymer 283 (2023) 126227.
8. Yukai Ge, Cui Jiang, Ping Cheng, Mingfeng Sun, Zhigang Zheng, Tao Liu*. Prediction of open porosity of polystyrene foams based on simulation of bubble wall rupture during bubble growth. Chemical Engineering Science 262 (2022) 118051.
9. Yukai Ge, Zhiying Fang, Tao Liu*. Accurate determination of bubble size and expansion ratio for polymer foaming with non-isothermal PBB model based on additional energy conservation. Chemical Engineering Science 250 (2022) 117415.
10. Jiawei Lu, Hong Zhang, Yuemiao Chen, Yukai Ge, Tao Liu*. Effect of chain relaxation on the shrinkage behavior of TPEE foams fabricated with supercritical CO2. Polymer 256 (2022) 125262.
11. Mingzhang Song, Wei Luo, Shuibin Feng, Wenjun Jiang*, Yukai Ge, Tao Liu*. Effect of viscoelasticity on the foaming behaviour of long-chain branched polypropylene with different branching degrees analysed by using bubble-growth modelling. Polymer 238 (2022) 124397.
12. Liru Ma, Tao Liu*. Effecting factor analysis to stability of ultra-dry CO2-in-water foams stabilized with zwitterionic surfactants, polymers and nanoparticles. J. of Supercritical Fluids 181 (2022) 105487.
13. Liru Ma , Mengya Zhu , Tao Liu*. Effects of chain length of surfactants and their adsorption on nanoparticles on stability of CO2-in-water emulsions. Colloids and Surfaces A: Physicochemical and Engineering Aspects 644 (2022) 128877.
14. Jiawei Lu, Hong Zhang, Yuemiao Chen, Yukai Ge, Tao Liu*. Mechanical and rheological properties and CO2-foaming behavior of reactively modified TPEE with controlled chain entanglement. Journal of CO2 Utilization 62 (2022) 102070.
15. Menglong Xu, Linfeng Wei, Li Ma, Jiawei Lu, Tao Liu*, Ling Zhang, Ling Zhao, Chul B. Park*. Microcellular foamed polyamide 6/carbon nanotube composites with superior electromagnetic wave absorption. Journal of Materials Science & Technology 117 (2022) 215–224.
16. Yu Yang, Dong Wang, Jingyi Yang, Bin Wang, Tao Liu*. Fractal analysis of CT images of tight sandstone with anisotropy and permeability prediction. Journal of Petroleum Science and Engineering 205 (2021) 108919.
17. Menglong Xu, Jiawei Lu, Jinchuan Zhao, Linfeng Wei, Tao Liu*, Ling Zhao, Chul B. Park*. Rheological and foaming behaviors of long-chain branched polyamide 6 with controlled branch length. Polymer 224 (2021) 123730.
18. Yukai Ge, Tao Liu. Numerical simulation on bubble wall shape evolution and uniformity in poly(ethylene terephthalate) foaming process. Chemical Engineering Science 230 (2021) 116213.
19. Hong Zhang, Tao Liu*, Bin Li*, Hui Li, Zhihuai Cao, Geng Jin, Ling Zhao, Zhong Xin. Evaluating melt foamability of LLDPE/LDPE blends with high LLDPE content by bubble coalescence mechanism. Polymer 213 (2021) 123209.
20. Menglong Xu, Jiawei Lu, Yongna Qiao, Linfeng Wei, Tao Liu*, Patrick C. Lee, Ling Zhao, Chul B. Park*. Toughening mechanism of long chain branched polyamide 6. Materials and Design 196 (2020) 109173.
21. Yukai Ge, Jiawei Lu, Tao Liu*. Analysis of bubble coalescence and determination of the bubble radius for long-chain branched poly(ethylene terephthalate) melt foaming with a pressure balanced bubble- growth model. AIChE Journal 66 (2020) 16862.
22. Liru Ma, Lei Bao, Dongdong Hu, Ling Zhao, Tao Liu*. Effect of interfacial properties on the stability of ultra-dry CO2-in-water (C/W) foams stabilized with zwitterionic surfactants and nonionic/anionic polymers: Experimental and DPD simulation. J. of Supercritical Fluids 158 (2020) 104722.
23. Hong Zhang, Tao Liu*, Bin Li*, Hui Li, Zhihuai Cao, Geng Jin, Ling Zhao, Zhong Xin. Foaming and dimensional stability of LDPE foams with N2, CO2, i-C4H10 and CO2 - N2 mixtures as blowing agents. J. of Supercritical Fluids 164 (2020) 104930.
24. Hong Zhang, Tao Liu*, Bin Li*, Hui Li, Zhihuai Cao, Geng Jin, Ling Zhao, Zhong Xin. Anti-shrinking foaming of polyethylene with CO2 as blowing agent. J. of Supercritical Fluids 163 (2020) 104883.
近年承擔(dān)代表性項(xiàng)目
1. TPEE類玻璃體動(dòng)態(tài)交聯(lián)結(jié)構(gòu)對(duì)其粘彈性和發(fā)泡行為的作用機(jī)制(22378127),國(guó)家自然科學(xué)基金面上項(xiàng)目,2024.1-2027.12。
2. 致密油藏孔隙結(jié)構(gòu)的多尺度分形建模及多相流體在其中的滲流行為(22178098),國(guó)家自然科學(xué)基金面上項(xiàng)目,2022.1-2025.12。
3. 碳?xì)浔砻婊钚詣┑脑O(shè)計(jì)、合成及其構(gòu)建水/CO2微乳液的作用機(jī)理(21676081),國(guó)家自然科學(xué)基金面上項(xiàng)目,2017.1-2020.12。
4. 非氟CO2增稠劑的設(shè)計(jì)、合成及作用機(jī)理(21376087),國(guó)家自然科學(xué)基金面上項(xiàng)目,2014.1-2017.12。
5. 間歇發(fā)泡過(guò)程及其發(fā)泡材料成型的關(guān)鍵技術(shù)(2016YFB0302204),科技部國(guó)家重點(diǎn)研發(fā)計(jì)劃課題,2016.7-2021.6。