Page 215 - 《精细化工》2021年第1期
P. 215

第 1 期                     李   强,等:  纳米 SiO 2 增强 PAM/PEI 冻胶的制备及性能                         ·205·


                (4)SEM 和 TG 证实了 C-SiO 2 /PAM/PEI 体系                in water-based drilling fluid[D]. Qingdao:  China University of
            冻胶的增强机理,纳米 SiO 2 与 PAM 分子在交联过                          Petroleum (East China)〔中国石油大学(华东)〕, 2017.
                                                               [18] MAO H (毛惠), QIU Z S (邱正松), FU J G (付建国), et al. Synthesis
            程中形成了氢键,其与分子间范德华力的协同作用                                 and drilling fluid performance of polymer based  nano-silica
            提高了该冻胶体系的锁水能力,形成更为紧密的三                                 composite[J]. Journal of Central South University: Science  and
                                                                   Technology (中南大学学报:  自然科学版), 2015, 45(7): 2564-2570.
            维网状结构,从而具有良好的调剖堵水效果。
                                                               [19]  CHEN Y X (陈玉祥), WANG X (王霞), DU X D (杜旭东), et al.
                                                                   The invention relates to a modified nano drilling fluid treatment agent
            参考文献:                                                  for inhibiting mud shale expansion: CN101818050[P]. 2010-09-01.
            [1]   JIA C Z (贾承造), PANG X Q (庞雄奇), JIANG F J (姜福杰).   [20]  MEI Z, LIU S Y, WANG L, et al. Preparation of positively charged
                 Research status and development direction of oil and gas resources in   oil/water nano-emulsions with a sub-PIT method[J]. Journal of
                 China[J]. Petroleum Science Bulletin (石油科学通报), 2016,  1(1):   Colloid & Interface Science, 2011, 361(2): 565-572.
                 2-23.                                         [21]  SUN Y S (孙迎胜), CHEN Y (陈渊), WEN D L (温栋良),  et al.
            [2]   JING Y (景艳), ZHANG S C (张士诚), LYU X (吕鑫), et al.   Performance evaluation and field application of nanometer plugging
                 Research of HPAM/Al 3+   weak gel system with high temperature   agent[J]. Advances in Fine Petrochemicals (精细石油化工进展),
                 resistance and high salt tolerance[J]. Fine Chemicals (精细化工),   2010, 11(11): 10-12.
                 2005, 22(11): 856-858.                        [22]  ZHOU Z P ( 周治平 ), XIE B G ( 谢炳光 ). Application  of
            [3]   ZHU D Y, BAI B J,  HOU J  R. Polymer gel systems  for water   nano-materials to drilling fluid[J]. Safety  and Environmental
                 management in high-temperature petroleum reservoirs: A Chemical   Engineering (安全与环境工程), 2012, 3(6): 148-151.
                 Review[J]. Energy & Fuels, 2017, 31(12): 13063-13087.   [23]  WANG X M (王绪美), XIE H X (解洪祥), ZHAO F W (赵福伟),
            [4]   YU  Z S (于志省), XIA Y  M  (夏燕敏), LI  Y C (李应成). Newest   et al. Laboratory study of a new non-fluorescent nano drilling fluid
                 research development of acrylamide based polymer flooding agent   additive PNP[J]. Drilling Fluid & Completion Fluid (钻井液与完井
                 with temperature resistance and salt tolerance[J]. Fine Chemicals (精  液), 2014, 31(6): 13-16.
                 细化工), 2012, 29(5): 417-424, 442.              [24]  SRIVATSA J T, ZIAJA M B. An experimental investigation on use
            [5]   ZHANG  L, PU C S, SANG H B, et al.  Mechanism study of  the   of nanoparticles as fluid loss additives in a surfactant-polymer based
                 cross-linking reaction of hydrolyzed  polyacrylamide/Ac3Cr  in   drilling fluids[C]//SPE International Symposium on Oilfield Chemistry,
                 formation water[J]. Energy & Fuels, 2015, 29(8): 4701-4710.   2012: 1-19.
            [6]   WANG J X. Preparation and evaluation of polyacrylamide /organic   [25]  YANG Z G, LIU Y G, ZHAO X Z, et al. Research and application of
                 chromium polymer gel system[J]. Advances in Fine Petrochemicals,   nanoscale emulsion lubricating material for drilling fluid in daqing
                 2008, 9(4): 10-12.                                oil  field[C]//SPE International  Symposium on Oilfield  Chemistry,
            [7]   SENGUPTA B, SHARMA V, UDAYABHANU G. Gelation studies   2012: 1-7.
                 of an organically cross-linked polyacrylamide water shut-off gel   [26]  CHEN L F, WANG J J, YU L, et al. Experimental investigation on
                 system  at different temperatures and pH[J]. Journal  of  Petroleum   the nanosilica-reinforcing polyacrylamide/polyethylenimine hydrogel
                 Science and Engineering, 2012, 81: 145-150.       for water shutoff treatment[J]. Energy & Fuels, 2018, 32(6): 6650-6656.
            [8]   BAI Y R,  LI J J, XIONG C M,et al.  Effect of a polymer on   [27]  ZHANG T L  (张太亮), FAN K X (范开鑫),  LIU W Q  (刘婉琴),
                 chromium (Ⅲ) diffusion during gelant injection in fractured media[J].
                                                                   et al.  Synthesis  and properties of P(AA/AM/APEG)/nano-SiO 2
                 Journal of Applied Polymer Science, 2016, 133(20): 566-572.   composite high absorbent reins[J]. Fine Chemicals (精细化工),
            [9]   MORGAN J C, SMITH P H, STEVENS D G. Chemical adaptation   2017, 34(2): 145-151.
                 and development strategies for water and gas shut of gels[J]. Special   [28]  LIU Y P (刘远朋), WU Z K (吴仲岿), XIA C (夏翠), et al.
                 Publication-Royal Society of Chemistry, 1998, 211: 119-131.   Preparation and properties research of nano-SiO 2/TPM/ acrylamide
            [10]  BAI Y R, XIONG C  M,  WEI F L, et al.  Gelation study on a
                                                                   high-strength composite hydrogels[J]. Journal of Hubei  University:
                 hydrophobically associating polymer/polyethylenimine gel system
                                                                   Natural Science Edition (湖北大学学报:  自然科学版), 2012, 34(1):
                 for water shut-off treatment[J]. Energy & Fuels, 2015, 29(2): 447-458.   73-76.
            [11]  EL-KARASANI K S M, AL-MUNTASHERI G A, SULTAN A S, et   [29]  ZENG  L Z (曾令子). Study on  preparation and properties  of
                 al.  Gelation kinetics of PAM/PEI system[J]. Journal of  Thermal   poly(acrylamide)/SiO 2 nanocomposite hydrogel[D]. Wuhan: Wuhan
                 Analysis & Calorimetry, 2014, 116(3): 1409-1415.
            [12]  MARY H, WOUTER B, ALY  H,  et al.  The first carbonate field   University of Technology (武汉理工大学), 2011.
                 application of a new organically crosslinked water shut off polymer   [30]  CHEN B (陈博), CHEN X Q (陈学琴), REN J (任军),  et al.
                 system[C]//SPE International Symposium on Oilfield Chemistry,   Research progress on surface  modification of nanometer silica[J].
                 1999: 361-376.                                    Silicone Material (有机硅材料), 2017, 31(5): 396-400.
                                                               [31]  GONG X Q (公绪强), WANG Y Q (王雅祺), ZHANG  L (张利).
            [13]  EL-KARSANI S M, AL-MUNTASHERI G A, SULTAN A S, et al.
                                                                   Enhanced and toughened polybutylene terephthalate by  modified
                 Gelation of a water-shutoff gel at high pressure and high temperature:
                                                                   nano-silica[J]. Materials Reports (材料导报), 2016, 30(4): 52-56.
                 Rheological investigation[J]. SPEJ, 2015, 20(5): 1-10.
            [14]  GHRIGA M A, GRASSL B, GARECHE M, et al. Review of recent   [32]  SYDANSK R D. Acrylamide-polymer/chromium (Ⅲ)-carboxyl-ategels
                 advances in polyethylenimine crosslinked polymer gels used for   for near wellbore matrix treatments[J]. SPE Adv Technol Ser, 1993,
                 conformance control applications[J]. Polymer Bulletin, 2019, 76(11):   1(1): 146-152.
                 6001-6029.                                    [33]  QIN Y (秦义), SHI Z (石峥), LIU Y L (刘玉莉), et al. Analysis of
            [15]  XI M L (席旻龙), ZHANG Y W (张幼维). Influence of the amount   factors affecting  gel forming time of PAM/PEI gel[J]. Modern
                 of  hydrophobic treating agent on the properties of liquid silicone   Chemical Industry (现代化工), 2017, 37(9): 95-98.
                 rubber[J]. Silicone material (有机硅材料), 2017, 31(1): 33-35.     [34] CHEN  T  ( 陈涛 ). Synthesis and performance evaluation of
            [16]  LIU J C (刘景春), HUANG Z J (黄志杰), ZUO M X (左美祥), et al.   hydrophobic associating polymer gel[D]. Qingdao: China University
                 The application of high-tech nano-SiO x in 21st century[J]. Journal of   of Petroleum (East China)〔中国石油大学(华东)〕, 2017.
                 Chinese High-tech Enterprises (中国高新技术企业杂志), 2020, (3):   [35]  YU H (于海), ZHANG P (张鹏), YAO P Z (姚培正). Polyacrylamide
                 22-25.                                            gel system[J]. Hangzhou Chemical Industry (杭州化工), 2011, 41(1):
            [17]  WU Y Y (吴艳艳). Research and application of modified nano silica   17-19, 26.
   210   211   212   213   214   215   216   217   218   219   220