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·64·                              精细化工   FINE CHEMICALS                                 第 39 卷

                 fractured oil-wet carbonate reservoirs[J]. SPE Journal, 2019, 24(6):   [69]  LIU Y (刘勇), TANG S F (唐善法), XUE W J (薛汶举). EOR
                 2822-2840.                                        experiments of N 2 foam flooding with low interfacial tension[J].
            [62]  JANSSEN M T G, PILUS R M, ZITHA P L J, et al. Foam-assisted   Oilfield Chemistry (油田化学), 2015, 32(4): 520-524.
                 chemical flooding for enhanced oil recovery: Effects of slug salinity   [70]  YUAN F Q (元福卿), ZHAO F J (赵方剑), XIA X R (夏唏冉), et al.
                 and drive foam strength[J]. Energy & Fuels, 2019, 33 (6): 4951-4963.   Single well pilot for low tension N 2 foam in the 2-2-3 block of
            [63]  COTTIN C, MOREL D C, LEVITT D, et al. Alkali surfactant gas   Shengtuo oilfield[J]. Petroleum Geology and Recovery Efficiency
                 injection: Attractive laboratory results under the harsh salinity and   (油气地质与采收率), 2014, 21(1): 70-73.
                 temperature conditions  of Middle East carbonates[C]// Abu Dhabi   [71]  LAN Y B (兰玉波), LIU C L (刘春林), ZHAO Y S(赵永胜). Pilot
                 International Petroleum Exhibition and Conference, 2012: SPE-   test evaluation for foam flood in Daqing Oilfield[J]. Natural Gas
                 161727-MS.                                        Industry (天然气工业), 2006, 26(6): 102-104.
            [64]  HOSSEINI-NASAB S M, ZITHA P L J. Investigation of chemical-   [72]  LIU L J (刘丽杰). Research on foam flood for enhancing  oil
                 foam design as a novel approach towards immiscible foam flooding   recovery in 2-2-3  block  of  Shengtuo[J]. Journal of Oil and Gas
                 for enhanced oil recovery[J]. Energy & Fuels, 2017, 31(10): 10525-   Technology (石油天然气学报), 2014, 36(4): 143-147.
                 10534.                                        [73]  MA K,  REN G, MATEEN  K, et al.  Modeling techniques for foam
            [65]  JANSSEN M T G, PILUS R M, ZITHA P L J, et al. A comparative   flow in porous media[J]. SPE Journal, 2017, 20(3): 453-470.
                 study of gas flooding and foam-assisted chemical flooding in   [74]  JIAN G, ZHANG L, DA C, et al. Evaluating the transport behavior of
                 Bentheimer sandstones[J]. Transport in Porous Media, 2020, 131(1):   CO 2 foam in the presence of crude oil under high-temperature and
                 101-134.                                          high-salinity conditions for carbonate reservoirs[J]. Energy & Fuels,
            [66]  HAHN  R, SPILKER K, ALEXIS  D,  et al.  Low tension foam   2019, 33(7): 6038-6047.
                 flooding for chemical enhanced oil recovery in heterogeneous   [75]  COATS K H, WHITSON C H, THOMAS K. Modeling conformance
                 systems[C]// SPE Annual Technical Conference and Exhibition,   as dispersion[J]. SPE Reservoir Evaluation & Engineering, 2009, 12
                 Dallas, Texas, 2018: SPE-191706-MS.               (1): 33-47.
            [67]  CUI  L,  SALABERT G, DI-COSTANZO O,  et al. Surfactant   [76]  ZENG Y, FARAJZADEH R, BISWAL S L, et al. A 2-D simulation
                 formulation for foam  mobility control and gas  shut-off in harsh   study on CO 2 soluble surfactant for foam enhanced oil recovery[J].
                 operational and reservoir conditions[C]// Abu Dhabi International   Journal of Industrial and Engineering Chemistry, 2019, 72: 133-143.
                 Petroleum Exhibition & Conference, 2020: SPE-203481-MS.   [77]  MA K, MATEEN K, REN G, et al. Mechanistic modeling of foam
            [68]  SUN J F (孙建峰), GUO D H (郭东红), CUI X  D  (崔晓东),   flow through porous media in the presence of oil: Review of foam-oil
                 et al.Study on properties of low interfacial tension foam flooding   interactions and an improved bubble population-balance model[C]//
                 system as betaine[J]. Oil Drilling & Production Technology (石油钻  SPE Annual Technical Conference and Exhibition, Dallas, TX, 2018:
                 采工艺), 2014, 36(3): 92-95.                         SPE-191564-MS.


            (上接第 6 页)                                          [54]  YU Z L (余作龙), RAO G W (饶桂维), YAN X P (严小平), et al.
            [45]  LI Y Q (李艳青), ZHAO J Y (赵家圆), SONG D W (宋大巍), et al.   Preparation and properties  of  pea starch/ε-poly lysine  composite
                 Study on the antibacterial effect of natural biological preservative on   films[J]. Science and Technology of Food Industry (食品工业科技),
                 spicy duck neck[J]. Journal of Heilongjiang Bayi Agricultural   2018, 39(13): 89-93, 242.
                 University (黑龙江八一农垦大学学报), 2019, 31(2): 46-51.     [55]  QIU X H (邱肖华), WU Y S (吴依莎), ZHU Z Z (朱政泽), et al.
            [46] HE L (何丽). Study on the preservation methods of chilled freshwater   Development and characterization of ε-poly lysine/starch antibacterial
                 fish cutting products based on the growth control of microorganism   films[J]. Food Research and Development (食品研究与开发), 2020,
                 [D]. Wuhan: Wuhan Polytechnic University (武汉轻工大学), 2016.     41(1): 154-159.
            [47] HE Y (贺羽), WANG S (王帅), JIN Y (金益), et al. Effect of natural   [56]  TANG Q Y (汤秋冶), PAN D D (潘道东), SUN Y Y (孙杨赢), et al.
                 preservatives on preservation of low temperature  meat products[J].   Effect of sodium alginate-based antimicrobial composite coating
                 Jiangsu Agricultural Sciences (江苏农业科学), 2019, 47(1): 177-182.     treatment on the preservation of chilled duck[J]. Modern Food
            [48]  JIA S L, LIU Y M, ZHUANG S, et al. Effect of ε-polylysine and ice   Science and Technology (现代食品科技), 2016, 32(8): 240-245, 301.
                 storage on microbiota composition and quality of pacific white shrimp   [57]  ZHANG H T (张海婷), SUN M X (孙明曦), ZHANG Z N (张振楠),
                 (Litopenaeus vannamei) stored at 0  ℃[J]. Food Microbiology, 2019,   et al. Based on ε-polylysine production research of antibacterial food
                 83: 27-35.                                        wrappers[J]. The Food Industry (食品工业), 2021, 42(1): 109-112.
            [49]  BEN  C.  Chitosan:  Properties,  modifications  and  food  [58]  ZHANG X H (张小涵). Development of chitosan-soybean protein
                 nanobiotechnology[J]. Procedia Manufacturing, 2020, 46: 652-658.     isolate edible films with antimicrobial properties[D]. Shenyang:
            [50]  ZHANG Z (张振). Effect of chitosan combined with  ε-polylysine   Shenyang Agricultural University (沈阳农业大学), 2019.
                 and carrageen coating on the quality of refrigerated Chinese shrimp   [59]  SHA J H (沙金华), MA X J (马晓军). Study on extraction
                 [D]. Shenyang: Shenyang Agricultural University (沈阳农业大学), 2020.     technology of pea protein isolate[J]. Science and Technology of Food
            [51]  LI N, LIU W R, SHEN Y, et al. Coating effects of ε-polylysine and   Industry (食品工业科技), 2009, (7): 262-263.
                 rosmarinic    acid combined with chitosan on the storage quality of   [60]  GUO Y (郭永).  Preparation of pea isolate protein antibacterial
                 fresh half-smooth  tongue sole (Cynoglossus semilaevis Günther)   membrane containing  ε-polylysine (ε-PL) and its antibacterial and
                 fillets[J]. Coatings, 2019, 9: 1-16.              physical properties[J]. The Food Industry (食品工业), 2020, 41(9):
            [52]  ZHANG P (张盼), WANG J P (王俊平). Effect of chitosan-pullulan   140-143.
                 composite antibacterial-films on fresh-keeping of chilled beef[J].   [61]  YANG P P (杨萍萍), GUO S Q (郭思琪), HOU W F (侯温甫), et al.
                 Journal of Chinese Institute of Food Science and Technology (中国  Antibacterial of  ε-poly-L-lysine/polyvinyl alcohol composite film
                 食品学报), 2020, 20(6): 194-201.                      and its  preservation effect on fresh  duck meat[J].  Modern Food
            [53]  RUBILAR J F, ZUNIGA R N, OSORIO F, et al. Physical properties   Science and Technology (现代食品科技), 2020, 36(3): 113-119, 98.
                 of emulsion-based hudroxypropyl methylcellulose/whey protein   [62]  TAN Z L  ( 谭之 磊 ). Preparation and antibacterial activity of
                 isolate (HPMC/WPI) edible films[J].  Carbohyd Polymeters, 2015,   ε-polylysine and its composites[D]. Tianjin: Tianjin University (天津
                 123: 27-38.                                       大学), 2014.
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