»Research Interests 1. The theory and method of chemical flooding 2.Themethod and technology toimprove heavy oil steam injection effect 3.The technology of high water oilfield deep displacement 4.The technology toincrease productivity and injection of low permeability oilfield 5.The development and application technologyof oilfield chemicals
»Courses Offered Chemical principleII ,Oilfield chemistry , EOR principle , Chemicals for oil recovery , Principle and method to improve oil recovery . »Research Projects 1. The industrialization development and application demonstration of oilfield chemicals 2. The development and application of high temperature acidizing fracturing additive 3. Oil displacement system of the surface active agent combination with steam stimulation 4. The key chemical preparation andquipment researche of special reservoir to improve the recovery rate 5. The surfactant researchto improve oil recovery of heavy oil reservoir after steam flooding 6. The mechanism research of low permeability reservoirs compound active system augmented injection 7. The new fracturing system development and industrial application 8. The technology research and application demonstration of large fracturing fluid flowback treatment and recycle 9. The state regulationWith the boundary layer and the body fluid flow 10. Themarket analysis and the key technology researchof international oil production technical service 11. The development of steam injection thermal recovery agent 12. The horizontal well water flooding technology research of Fan 142 13. The technical service contractOil of heavy oil test analysis 14. The research of high channel fracturing auto-agglutinationproppant 15.The optimization and adaptability study of compound active body augmented injection system 16. Hashan shallow layersuper heavy oil multiple thermal fluid auxiliary chemical flooding forerunner test 17. The research of low cost thermal recovery plugging technology
»Paper and Publications 1��Guicai Zhang��Lifeng Chen��Jijiang Ge��et al..Experimental research of syneresis mechanism of hpam/cr 3+ gel��Colloids & Surfaces A Physicochemical & Engineering Aspects��483��483��:96-103��2015. 2��Lifeng Chen, Guicai Zhang, Jijiang Ge, Mechanism of sodium tripolyphosphate inhibiting the syneresis of HPAM hydrogel [J]. RSC Advances, 2015, 5(103): 84872-584878. 3��Pei H, Zhang G, Ge J, et al. Investigation of synergy between nanoparticle and surfactant in stabilizing oil-in-water emulsions for improved heavy oil recovery[J]. Colloids & Surfaces A Physicochemical & Engineering Aspects, 2015, 484:478-484. 4��Chen L, Zhang G, Ge J, et al. Ultrastable Hydrogel for Enhanced Oil Recovery Based on Double-Groups Cross-Linking[J]. Energy & Fuels, 2015. 5��Pei H, Zhang G, Ge J, et al. Effect of the Addition of Low Molecular Weight Alcohols on Heavy Oil Recovery during Alkaline Flooding[J]. Ind.eng.chem.res, 2014,53(4): 1301-1307. 6��Chen L, Zhang G, Ge J, et al. Property evaluation of a new selective water shutoff agent for horizontal well[J]. Colloids & Surfaces A Physicochemical & Engineering Aspects, 2014, 446(5):33�C45. 7��Haihua Pei, Guicai Zhang, Jijiang Ge, Potential of alkaline flooding to enhance heavy oil recovery through water-in-oil emulsification, Fuel, 104:284-293,2013 8��Haihua Pei, Guicai Zhang*, Jijiang Ge, Study on the variation of dynamic interfacial tension in the process of alkaline flooding for heavy oil, Fuel,104: 372-378,2013 9��Jijiang Ge, Anzhou Feng, Guicai Zhang, Study of the Factors Influencing Alkaline Flooding in Heavy-Oil Reservoirs, Energy Fuels, 26(5):2875-2882, 2012 10��Haihua Pei, Guicai Zhang, Jijiang Ge, Comparative Effectiveness of Alkaline Flooding and Alkaline-surfactant Flooding for Improved Heavy-oil Recovery, Energy Fuels, 26(5):29112919,2012 11��Na Li, Guicai Zhang, Jijiang Ge, Adsorption behavior of betaine-type surfactnat on quartz sand, Energy Fuels, 25(10):4430-4437, 2011 12��Haihua Pei, Guicai Zhang, Jijiang Ge, Analysis of Microscopic Displacement Mechanisms of Alkaline Flooding for Enhanced Heavy Oil Recovery, Energy Fuels, 25 (10):4423-4429, 2011 13��Baodong Ding, Guicai Zhang, Jijiang Ge, Research on mechanisms of alkaline flooding for heavy oil, Energy Fuels, 24(12):6346-6352, 2010 14��J.J.Ge, G.C.Zhang, P.Jiang, Study on Influencing Factors of Chemical Flooding for Heavy Oil, Journal of Dispersion Science and Technology, 33(2):278-286,2012 15��Jianqiang Zhang, Guicai Zhang*, Jijiang Ge, Laboratory Studies of Depressurization with a High Concentration of Surfactant in Low-permeability Reservoirs, Journal of Dispersion Science and Technology, 33(11):1589-1595, 2012 16��Na Li, Guicai Zhang, Jijiang Ge, Ultra-low interfacial tension between heavy oil and betaine-type amphoteric surfactant, Journal of Dispersion Science and Technololgy, 33(2): 258-264, 2012 17��Guicai Zhang, Xiaoling Liu, Jijiang Ge, Laboratory study on low gas/liquid ratio foam flooding for Zhuangxi heavy oil, Journal of Dispersion Science and Technololgy, 32(11):1566-1573, 2011 18��Jiaxin Zeng, Jijiang Ge, Guicai Zhang. Synthesis and Evaluation of Homogeneous Sodium Hexadecyl Polyoxypropylene Ether Sulfates, Journal of Dispersion Science and Technology, 31(3):307-313, 2010 19��Mingguang Tang, Guicai Zhang, Jijiang Ge, Investigation into the mechanisms of heavy oil recovery by novel alkaline flooding, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 421: 91-100, 2013 20��Jijiang Ge, Haihua Pei, Guicai Zhang, Investigation into the Functions of Alkali and Surfactant in Chemical Flooding for Enhanced Heavy-Oil Recovery, Advanced Materials Research, 524:1816-1820, 2012 21��Haihua Pei, Guicai Zhang, Jijiang Ge, Effect of oil viscosity, permeability and residual oil saturation on performance of alkaline flooding in recovery of heavy oil, Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 34 (8): 702-710, 2012 22��T. Chen, G. Zhang, J. Ge, Dynamic Interfacial Tension Between Gudao Heavy Oil and Petroleum Sulfonate/HPAM Complex Systems, Petroleum Science and Technology, 30(14):1417-1423, 2012 23��T. Chen, G. Zhang, J. Ge, Hydroxysulfobetaine/Hydrolyzed Polyacrylamide Complex Systems for Gudao Heavy Oil Recovery: A Dynamic Interfacial Tension Study, Petroleum Science and Technology, 30(14):1433-1440, 2012 24��H. H. PEI, G. C. ZHANG, J. J. GE, Laboratory Investigation of Enhanced Heavy Oil Recovery by Foam Flooding with Low Gas-Liquid Ratio, Petroleum Science and Technology, 29(11):1176-1186, 2011 25��Jing Wang, Jijiang Ge, Guicai Zhang. Low gas-liquid ratio foam flooding for conventional heavy oil, Petroleum Science, 8(3):335-344, 2011
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