Page 180 - 《精细化工》2022年第5期
P. 180

·1034·                            精细化工   FINE CHEMICALS                                 第 39 卷

                                                                   and interaction with DNA of complexes containing  C, N, O
            3   结论                                                 coordination atoms[D]. Qingdao: Ocean University of China (中国海
                                                                   洋大学), 2008.
                 以 EDC/NHS 为催化剂,采用生物阻燃剂 AMP                    [13]  WANG Y J (王迎军), YANG C R (杨春蓉), WANG L Y (汪凌云),
                                                                   et al.  Influence of EDC/NHS crosslinking on physicochemical
            对蚕丝进行改性,制备生态阻燃耐久性丝织物。改                                 properties of collagen[J]. Journal of South China University of
            性丝织物 FTIR 谱图中存在 P—O—C 和 P—O 的特                         Technology (Natural Science Edition) (华南理工大学学报:  自然科
                                                                   学版), 2007, (12): 66-70.
            征吸收峰,纤维表面存在颗粒状覆盖物,证明 AMP
                                                               [14]  SUN F C (孙范忱), GUO J (郭静), YANG  Q (杨强), et al.
            成功整理到丝织物上。相较于原丝织物,AMP-丝织                               Preparation and biocompatibility of EDC-NHS crosslinked
            物(EDC/NHS)失重率降低 13.06%,HRR 降低                          chitosan-polyethyleneoxide-silk  fibroin electrospun nanofibers[J].
                                                                   Acta Materiae Compositae Sinica (复合材料学报), 2020, 37(11): 8.
            30.6%,EHC 下降 25.42 MJ/kg,TSR 降低 86.5%,             [15]  WU K, HU Y, SONG L,  et al. Flame retardancy and thermal
            LOI 达到 30.10%,说明阻燃剂 AMP 具有热分解吸                         degradation  of  intumescent  flame  retardant  starch-based
            热量大、消烟性和离火自熄性等优点。水洗 50 次仍                              biodegradable composites[J]. Ind Eng Chem Res, 2007, 48: 3150-
                                                                   3157.
            能达到难燃等级,具有良好的耐洗牢度。本文制备                             [16]  PAL N, SAXENA  N, DIVYA  L K V,  et al. Interfacial behaviour,
            的阻燃蚕丝织物耐久性良好,安全无污染,生态环                                 wettability alteration and emulsification characteristics of a novel
                                                                   surfactant: Implications for enhanced oil recovery[J]. Chemical
            保,未来在家装等方面具备广阔的应用前景。
                                                                   Engineering Science, 2018, 187(1): 200-212.
                                                               [17]  TSUKADA M, KHAN M, TANAKA T, et al. Thermal characteristics
            参考文献:                                                  and physical properties of silk fabrics grafted with  phosphorous
            [1]   CAI H H (蔡海华), CHENG L (程岚), LI Z (李智), et al. Research   flame retardant agents[J]. Text Res J, 2011, 81: 1541-1548.
                 progress on preparation of modified silk by feeding method[J].   [18]  LYU Z (吕仲), YANG Y C (杨砚超), GUAN J P (关晋平),  et al.
                 Materials Reports (材料导报), 2020, 34(23): 194-202.   Layer-by-layer self-assembly preparation of flame retardant silk
            [2]   ZHANG H Q (张华强), ZHANG W (张维), LI T S (李天舒), et al.   fabric with chitosan/sulfonated lignin/sodium phytate[J]. China
                 Flame retardant property of silk fabric after treatment with ammonium   Dyeing and Finishing (印染), 2019, 45(17): 7-12.
                 borate doped with silica sol[J]. Silk (丝绸), 2015, 52(1): 8-13.     [19]  ZOU X (邹旭), WANG Q Q (王倩倩), ZHU P (朱平). Synthesis of
            [3]   PAN J J (潘建军), ZHANG X T (张晓婷), LU X Y (陆勋元), et al.   phosphorus nitrogen flame retardant and the properties of treated
                 Research progress on the application and testing methods of   cotton fabrics by it[J]. Fine Chemicals (精细化工), 2020, 37(4):
                 organophosphorus flame retardants in textiles[J]. Textile Dyeing and   815-820, 833.
                 Finishing Journal (染整技术), 2019, 41(4): 7-10, 16.   [20]  DING Y M (丁彦铭), ZHANG X T  (张雪婷), DU W Z (杜文州),
            [4]   ROSACE G, COLLEONI C,  TROVATO V,  et al. Vinylphosphonic   et al. Simulation of charring solid combustion based on  multiple
                 acid/methacrylamide system as a durable intumescent flame retardant   pyrolysis gases[J]. China Safety Science Journal  (中国安全科学学
                 for cotton fabric[J]. Cellulose, 2017, 24(7): 3095-3108.   报), 2020, 30(9): 159-167.
            [5]   WEI D D (魏东东). Preparation and application of flame retardant   [21]  FENG Y Z, HE C G, WEN Y F, et al. Superior flame retardancy and
                 antibacterial hydrophobic organosilicon functional additives for   smoke  suppression  of  epoxy-based  composites  with
                 cotton fabrics[D]. Qingdao: Qingdao University (青岛大学), 2019.   phosphorus/nitrogen co-doped graphene[J]. Journal of  Hazardous
            [6]   LIU C (刘纯). Synergistic effect and mechanism of modified silica   Materials, 2018, 346: 140-151.
                 sol flame retardant systems on silk fabric[D]. Suzhou: Soochow   [22]  AN W (安文), MA J Z (马建中). Preparation and flame retardanct
                 University (苏州大学), 2019.                          properties of casein-based RGO composite emulsion[J]. Fine
            [7]   ROVIRA J, DOMINGO J L. Human health risks due to exposure to   Chemicals (精细化工), 2021, 38(5): 1045-1052.
                 inorganic and organic chemicals from textiles: A review[J].   [23]  CHEN Y B (陈云博), CHEN G Q (陈国强), XING T L (邢铁玲).
                 Environmental Research, 2019, 168(1): 62-69.      Flame retardant finishing of silk fabrics with boron phosphate doped
            [8]   CHENG X W, GUAN J P, YANG X H, et al. Improvement of flame   silica sol[J]. Journal of Textile Research (纺织学报), 2017, 38(8):
                 retardancy of silk fabric by bio-based  phytic acid, nano-TiO 2, and   96-101.
                 polycarboxylic acid[J]. Progress in Organic Coatings, 2017, 112:   [24]  WANG Z Y  (王紫颖), JIN G B  (金国标). The synthesis and
                 18-26.                                            application of  vinyl phospho-nitrogen flame retardants[J]. Modern
            [9]   ZHANG W, WANG M, GANG J P,  et al. Casein phosphopeptide-   Textile Technology (现代纺织技术), 2015, 23(1): 28-32.
                 metal salts combination: A novel route for imparting the durable   [25]  WEN X X (文星星), LI  Y (李勇), WANG M K (王明凯), et al.
                 flame retardancy to silk[J]. Journal  of the Taiwan Institute of   Preparation and properties of styrene butadiene rubber crosslinked by
                 Chemical Engineers, 2019, 101: 1-7.               amide bond[J]. Special Purpose Rubber Products (特种橡胶制品),
            [10]  ALONGI J,  DI BLASIO A, CUTTICA F,  et al. Bulk or surface   2021, 42(5): 15-19.
                 treatments of ethylene vinyl  acetate copolymers with DNA:   [26]  XIE H  D (谢洪德), WANG H W (王红卫), LI N (李宁), et al.
                 Investigation on the flame retardant properties[J]. European Polymer   Studies on change of properties of tussah fabric after graft
                 Journal, 2014, 51: 112-119.                       modification by plasma treatment[J]. Journal of Textile Research (纺
            [11]  XIA S S (夏双双), WU L (吴丽), PI T T (皮婷婷),  et al.   织学报), 2005, (5): 28-30.
                 Fire-retardant finishing of polylactic acid fabrics with DNA   [27]  JIANG D W (姜大伟), XU Q L (徐庆玲), REN B B (任彪彪), et al.
                                                                     +
                 hydrosol[J]. China Fiber Inspection (中国纤检), 2016, (2): 142-144.   Na flame retardant modified  flax fiber and effect on fiber
            [12]  DONG F Y (董凤英). Synthesis, structure, supramolecular assembly     properties[J]. Fine Chemicals (精细化工), 2019, 36(9): 1809-1815.
   175   176   177   178   179   180   181   182   183   184   185