Page 206 - 《精细化工》2021年第5期
P. 206
·1060· 精细化工 FINE CHEMICALS 第 38 卷
程,综合分析得出,自制聚合物破乳剂在油水界面 [14] State Bureau of Petroleum and Chemical Industries. Bottle test
易溶解扩散,排液速率快,破乳脱水效果好。 method for the demulsification performance of ctude oil
demulsifiers: SY/T5281—2000[S]. Beijing: Petroleum Industry Press
(4)本工作不仅丰富了破乳剂种类,为油田采 (石油工业出版社), 2000: 1-5.
出液的破乳脱水增加了可选择性,而且对后续研究 [15] National Energy Administration. Water quality standard and practice
for analysis of oilfield injecting waters in clastic reservoirs: SY/T
乳状液的化学破乳过程提供了一定的参考价值。 5329—2012[S]. Beijing: Petroleum Industry Press (石油工业出版
社), 2012: 1-18.
参考文献: [16] MITSUHIRO S, NAOZUMI T, KYOHEI H, et al. Thermal and
[1] TONG K, ZHANG Y H, PAUL K C. Evaluation of calcium chloride mechanical properties of semi-interpenetrating polymer networks
for synergistic demulsification of super heavy oil wastewater[J]. composed of diisocyanate-bridged, four-armed, star-shaped
Colloids and Surfaces Physico Chemical and Engineering Aspects, ε-caprolactone oligomers and poly(ε-caprolactone)[J]. Journal of
2013, 419: 46-52. Applied Polymer Science, 2013, 130(6): 4229-4236.
[2] SUN Y P (孙玉鹏), SHEN Z (沈哲), LAN J J (兰建军), et al. [17] ZHOU T (周亭), YANG S C (杨世超), ZHANG Z Q (张志庆), et al.
Research and application of the high efficient crude oil mixed Research on experiment of surfactants aggregate parameters by
demulsifiers SWT-111[J]. Applied Chemical Industry (应用化工), pyrene fluorescence probe method[J]. Experimental Technology and
2011, 40(9): 1672-1674. Management (实验技术与管理), 2018, 35(1): 53-56.
[3] LI Z W, GENG H K, WANG X J, et al. Noval tannic acid-based [18] ZHOU T, AO M Q, XU G H, et al. Interactions of bovine serum
polyether as an effective demulsifier for water-in aging crude oil albumin with cationic imidazolium and quaternary ammonium
emulsions[J]. Chemical Engineering Journal, 2018, 354: 1110-1119. gemini surfactants: Effects of surfactant architecture[J]. Journal of
[4] NGUYEN D, BALSAMO V J. Effect of diluents and asphaltenes on Colloid and Interface Science, 2013, 389: 175-181.
interfacial properties and steam-assisted gravity drainage emulsion [19] YANG S ( 杨珊 ), LI Y L ( 李雅 丽 ). Experiment design on
stability: Interfacial rheology and wettability[J]. Energy & Fuels, determination of the liquid surface tension by wilhelmy method[J].
2014, 28(3): 1641-1651. Chinese Journal of Chemical Education (化学教育: 中英文), 2018,
[5] GUO J X (郭继香), YANG Y Q (杨矞琦), ZHANG J W (张江伟), 39(10): 44-48.
et al. Research and application of super heavy oil composite viscosity [20] SURESH K I, FOERST G, SCHUBERT R, et al. Synthesis and
reducer SDG-3[J]. Fine Chemicals (精细化工), 2017, 34(3): 341-348. micellization properties of new anionic reactive surfactants based on
[6] KALEY I, FENG X H. Influence of structural variations of hydrogenated cardanol[J]. Journal of Surfactants & Detergents, 2012,
demulsifiers on their performance[J]. Industrial & Engineering 15(2): 207-215.
Chemistry Research, 2013, 52: 785-793. [21] GHAZAWY R A, SABAGH A M, KANDILE N G, et al. Synthesis
[7] LI M R (李美蓉), DING L (丁俐), LIU N (刘娜), et al. Interfacial and preliminary demulsification efficiency evaluation of new
interaction between heavy oil viscosity reducer and dendrimers[J]. demulsifiers based on fatty oils[J]. Journal of Dispersion Science and
Journal of Petroleum (Petroleum Processing) (石油学报: 石油加 Technology, 2010, 31(10): 1423-1431.
工), 2015, 31(6): 1325-1331. [22] LI L L (李丽莉). Research on the synthesis and properties of weak
[8] JBAUER J, HUSING N, KICKELBICK G. Preparation of alkali asp polysiloxane crude oil demulsifier[D]. Daqing: Northeast
functionalized block copolymers based on a polysiloxane backbone Petroleum University (东北石油大学), 2017.
by anionic ring-opening polymerization[J]. Journal of Polymer [23] LIU W (刘伟). Study on demulsification and purification technology
Science Part A: Polymer Chemistry, 2002, 40(10): 1539-1551. for wastewater from heavil crude oil[D]. Dalian: Dalian University of
[9] WANG X J (王小静), ZHOU L H (周立辉), XU R J (许人军), et al. Technology (大连理工大学), 2009.
Synthesis and properties of modified polysiloxane demulsifier for [24] WANG J, HU F L, LI C Q, et al. Synthesis of dendritic polyether
heavy oil[J]. Fine Chemicals (精细化工), 2017, 34(11): 1301-1307. surfactants for demulsification[J]. Separation and Purification
[10] GAO W W (高弯弯), GUO R (郭睿), LIU X Y (刘雪艳), et al. Technology, 2010, 73(3): 101-108.
Preparation and demulsification properties of phenyl hydrosilicon oil [25] HUANG X F (黄翔峰), CHENG H (程航), LU L J (陆丽君), et al.
modified by NPEAA and AEPHS[J]. Chemical Industry and Investigation of chemical demulsification process by stability
Engineering Progress (化工进展), 2019, 38(6): 2922-2932. analyzer[J]. Chemical Industry and Engineering Progress (化工进
[11] CAI Q F (蔡奇峰), ZHOU J Z (周继柱), FU Z H (付增华), et al. 展), 2010, 29(5): 825-830.
Research on the relationship between structure and demulsification [26] YAO K Z (姚奎章), QI B (齐兵), LU M (路敏), et al. Study on
property of polyether crude oil demulsifier[J]. Applied Chemical enzymatic hydrolysis process and stability of walnut milk[J]. Modern
Industry (应用化工), 2013, 42(1): 68-71. Food Science and Technology ( 现代食品科技 ), 2016, 32(8):
[12] HU X Y (胡徐彦), TIAN Y (田宇), ZHOU G H (周国华), et al. 259-264.
Demulsification of polyether demulsifiers for WZ11-4 oilfield model [27] LIN L H, LIU H J, CHU H C, et al. Preparation and surface activities
produced emulsion[J]. Oilfield Chemistry (油田化学), 2017, 34(1): of modified double-tailed anionic surfactants[J]. Jouranal of
175-178,190. Surfactants and Detergents, 2012, 15(5): 623-629.
[13] WANG E M (王二蒙), GUO R (郭睿), XIE C M (解传梅), et al. [28] WANG J, LI C Q, AN N, et al. The synthesis and demulsification of
Synthesis and characterization of crude oil demulsifier macromonomer[J]. two longer generation hyperbranched polyther surfactants[J].
Speciality Petrochemicals (精细石油化工), 2014, 31(4): 5-8. Separation Science and Technology, 2012, 47(10): 1583-1589.