Page 232 - 《精细化工》2023年第3期
P. 232

·688·                             精细化工   FINE CHEMICALS                                 第 40 卷

            为低分子醇类),制成清洁水性稠化剂 FPM-1。                           [13]  VIKEN A L, SKAUGE T, SVENDSEN P E, et al. Thermothickening
                (2)在 FPM-1 中添加 CDEA 和 SDS 表面活性                     and salinity tolerant hydrophobically modified polyacrylamides for
                                                                   polymer flooding[J]. Energy Fuels, 2018, 32: 10421-10427.
            剂,增强了疏水缔合结构强度,提高了 FPM-1 的溶                         [14]  YI F, HUANG B,  WANG C S,  et al. Hydrophobically associating
            解性、黏度、耐盐性和耐温性能。FPM-1 表现为高                              polymers dissolved in seawater for enhanced oil recovery of bohai
                                                                   offshore oilfields[J]. Molecules, 2022, 27(9): 2744.
            黏弹性流体,质量分数 0.80% FPM-1 水溶液在 95 ℃
                                                               [15]  LV Y L, FENG Y J, WANG Z L, et al. Hydrophobically associating
            下的支撑剂悬浮时间为 1.47 h,支撑剂沉降速度为                             polymer "water-in-oil" emulsions used in multi-pad fracking for tight
            0.047 mm/s,FPM-1 具有良好的支撑剂悬浮能力。                         oil  reservoir: The first example in china[C]//SPE International
                                                                   Conference, 2017.
            在 180  ℃、170 s   –1  剪切条件下,质量分数 1.40%              [16]  TIAN H  Y, QUAN H P, HUANG  Z  Y,  et al. Polymeric and
            FPM-1 水溶液剪切 1 h 的最终表观黏度为 53 mPa·s,                     non-crosslinked acid self-thickening agent based on hydrophobically
            FPM-1 表现出优异的耐高温、耐剪切性能。                                 associating water-soluble polymer during the acid rock reaction[J]. J
                                                                   Appl Polym Sci, 2019, 136: 47907.
                (3)质量分数 0.80% FPM-1 水溶液配成的破胶                   [17]  SUN J S, ZHANG X F, LV K H,  et al. Synthesis of hydrophobic
            液在 120  ℃下破胶完全,破胶液澄清透明,无絮状                             associative polymers to improve the rheological and filtration
                                                                   performance of drilling fluids under  high temperature and high
            沉淀,较低的表/界面张力有利于破胶液的返排和回
                                                                   salinity conditions[J]. J Petrol Sci Eng, 2022, 209: 109808.
            收再利用,所以,FPM-1 为高性能、低储层伤害的                          [18]  AL-TAQ A A, NASREL-DIN H A, LAJAMI R A, et al. Effective
            水性液体稠化剂。                                               acid diversion and water control in  carbonate reservoirs using an
                                                                   associative polymer treatment: Case histories from saudi
                                                                   arabia[C]//SPE Annual Technical Conference and Exhibition, 2007.
            参考文献:
                                                               [19]  KANCHARLA S, ZOYHOFSKI N  A, BUFALINI L,  et al.
            [1]   BERA  A, SHAH  S. A review on modern  imaging techniques for   Association between nonionic amphiphilic polymer  and ionic
                 characterization of  nanoporous unconventional reservoirs:  Challenges   surfactant in aqueous solutions: Effect of polymer hydrophobicity
                 and prospects[J]. Mar and Petrol Geol, 2021, 133: 105287.   and micellization[J]. Polymers, 2020, 12(8): 1831.
            [2]   WEI J (魏俊), LIU T  Y  (刘通义),  DAI X L  (戴秀兰),  et al.   [20]  WANG C W,  MENG R Z,  JIN  J  Z,  et al. Self-assembly of
                 Preparation and properties of concentrated thickener for   hydrophobically associating amphiphilic polymer with surfactant and
                 supramolecular polymer clean fracturing fluid[J]. Fine Chemicals (精  its effect on nanoemulsion[J]. Colloid Surface A, 2022, 642(5): 128599.
                 细化工), 2020, 37(2): 385-390.                   [21]  LOWE A B, MCCORMICK C L. Synthesis and solution properties
            [3]   XU S L, CUI M K, CHEN R J, et al. Design of facile technology for   of zwitterionic polymers[J]. Chem Rev, 2002, 102(11): 4177-4189.
                 the efficient removal of hydroxypropyl guar gum from fracturing   [22]  FENG X G (冯新根), WANG L (王磊), ZHAO W (赵文),  et al.
                 fluid[J]. PLoS One, 2021, 16(3): e0247948.        Synergistic effect of different hydrophobic monomers on
            [4]   LI P (李朋), LAI X J (赖小娟), WANG L (王磊), et al. Synthesis and   polyacrylamide[J]. Modern Chemical Industry(现代化工), 2021,
                 properies of  high-temperature resistant acid thickener[J]. Fine   41(2): 214-218,228.
                 Chemicals (精细化工), 2022, 39(2): 411-416,432.   [23]  WANG S B, ZHANG Y  Y, GUO J C,  et al. A  study of  relation
            [5]   XIONG J J, ZHAO Z C, SUN W  N,  et al. Foam stabilization   between suspension behavior and microstructure and viscoelastic
                 mechanism of a novel non-cross-linked foam fracturing fluid[J]. ACS   property of guar gum fracturing fluid[J]. J Pet Sci Eng, 2014, 124:
                 Omega, 2021, 6(48): 32863-32868.                  432-435.
            [6]   ZHOU Y Z, WANG X L, HONG J L, et al. A laboratory study on one   [24]  HARRIS P C, WALTERS H G, BRYANT J. Prediction of proppant
                 kind of hydrophobic association fracturing fluid gelatinizer[J]. Appl   transport from rheological data[J]. SPE Prod Oper, 2009, 24: 550-
                 Chem Ind, 2015, 44(3): 520-524.                   555.
            [7]   GAO Y X (高玉祥). Optimize fracturing fluid and field application   [25]  ZHENG C C, HUANG Z Y. Self-assembly of hydrophobic associating
                 technology research[D]. Daqing:Northeast Petroleum University (东  polyacrylamide prepared by aqueous dispersion polymerization[J]. J
                 北石油大学), 2006.                                     Disper Sci Technol, 2019, 40: 1317-1325.
            [8]   BARATI R, LIANG J T. A Review of fracturing fluid systems used   [26]  WEI J (魏俊), LIU T  Y  (刘通义),  DAI X L  (戴秀兰),  et al.
                 for hydraulic fracturing of oil and gas wells[J]. J Appl Polym Sci,   Preparation and  performance evaluation  of  slurry thickener for
                 2014, 131(16):318-323.                            supramolecular polymer clean fracturing fluid[J]. Fine Chemicals (精
            [9]   DAI Y H, WU F P, LI M Z, et al. Interaction of novel hydrophobically   细化工), 2020, 37(2):385-390.
                 associating polymer P(AM/POEA)  with surfactant in aqueous   [27]  XIONG L J (熊利军), WANG L (王犁), WU Y (吴洋), et al. Preparation
                 solution[J]. Acta Chem Sinica, 2005, 63:1329-1334.   and performance  evaluation  of high-temperature resistant clean
            [10]  ZHU R, FENG Y N Y, LUO P Y. Net contribution of hydrophobic   fracturing fluid[J]. Fine Chemicals (精细化工), 2022, 39(1): 204-211.
                 association  to the thickening power of  hydrophobically  modified   [28]  MA X P (马喜平), ZHOU Z B (周照波), HUANG L (黄莉), et al.
                 polyelectrolytes prepared by micellar polymerization[J]. Macromolecules,   Preparation and evaluation of thickener for hyperbranched fracturing
                 2020, 53(4):1326-1337.                            fluid[J]. Fine Chemicals (精细化工), 2022, 39(12): 2569-2576.
            [11]  JIANG N F, ZHANG H D, TANG P, et al. Linear viscoelasticity of   [29]  ZHANG Y, MAO J C, ZHAO J  Z,  et al. Preparation  of a
                 associative polymers: Sticky rouse model and the role of bridges[J].   hydrophobic-associating polymer with ultra-high salt resistance using
                 Macromolecules, 2020, 53(9):3438-3451.            synergistic effect[J]. Polymers, 2019, 11(626): 1-18.
            [12]   TAM K, FARMER M, JENKINS R, et al. Rheological properties of   [30]  HU Y Y (胡莹莹). Synthesis and properties evaluation of hydrophobic
                 hydrophobically modified alkali-soluble polymers effects of ethylene-   associating polymers[D]. Chengdu: Southwest Petroleum University
                 oxide chain length[J]. J Polym Sci, Part B: Polym, 1998, 36: 2275- 2290.   (西南石油大学), 2018.
   227   228   229   230   231   232   233   234   235   236   237