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·168·                             精细化工   FINE CHEMICALS                                 第 38 卷

                 properties[J]. AAPS PharmTech, 2011, 12(2): 453-460.   alginate composite gel and its application in water treatment[J].
            [3]   TAKAHIRO F, YAPENG F, SAKIE N, et al. Rheological properties   Progress in Chemistry (化学进展), 2018, 30(11): 1722-1733.
                 of sodium alginate in an aqueous system during gelation in relation to   [13]  LIN Y B (林永波), XING J (邢佳), SUN W G (孙伟光), et al. Heavy
                                     2+
                 supermolecular structures and Ca  binding[J]. Food Hydrocolloids,   metal removal from wastewater using a granular  SA-PEO gel
                 2009, 23(7): 1746-1755.                           adsorbent[J]. Environmental Pollution Control (环境污染与防治),
            [4]   RODRIGUEZ-RIVERO C, HILLIOU L, MARTINDELVALLE E, et   2008, 30(3): 50-53.
                 al. Rheological characterization of commercial highly viscous alginate   [14]  MENG D (孟朵), NI C H (倪才华), ZHU C P (朱昌平),  et al.
                 solutions in shear and extensional flows[J]. Rheologica Acta, 2014,   Syntheses of modified alginate flocculant and its adsorption properties
                 53(7): 559-570.                                   for heavy metal ions[J]. Environmental Chemistry (环境化学), 2013,
            [5]   LIU S J, LI Y, LI L. Enhanced stability and mechanical strength of   32(2): 249-252.
                 sodium alginate composite films[J]. Carbohydrate Polymers, 2017,   [15]  TAO Y Q (陶宇庆), GONG J X (巩继贤), LI Z (李政),  et al.
                                                                                    2+
                 160: 62-70.                                       Adsorption properties of Cu  with adsorbent prepared by recovered
            [6]   YANG C  H, WANG M X, HUSSAIN H,  et al. Strengthening   sodium alginate[J]. Dyeing Finishing (印染), 2019, 3: 14-19.
                 alginate/polyacrylamide hydrogels using various multivalent cations[J].   [16]  WAN H S (万洪善). Adsorption of copper ion (Ⅱ) in aqueous
                 ACS Applied Materials & Interfaces, 2013, 5(21): 10418-10422.   solution with SAL/MWCNT gel[J]. Carbon Techniques (炭素技术),
            [7]   WANG S (王爽), XU G G (许国根), JIA Y (贾瑛), et al. Research   2014, 33(4): 27-30.
                 progress of sodium alginate gel spheres for organic wastewater   [17]  WANG M (王敏), HUANG Y L (黄运龙), HUANG Y G (黄耀葛),
                 treatment[J]. Applied Chemical Industry (应用化工), 2018, 47(12):   et al. Preparation of modified-alginate aerogel and study on lead ion
                 2715-2718.                                        adsorption[J]. New Chemical Materials (化工新型材料), 2017,
            [8]   EVELIINA R, JOLANTAK  W, AMIT B,  et al. Heavy metal  ions   45(9): 225-228.
                 adsorption by novel EDTA-modified chitosan silica hybrid materials[J].   [18]  GREGORT G, EDWINR M, DAVIDA R, et al. Biological interactions
                 Journal of Colloid & Interface Science, 2011, 358(1): 261-267.   between polysaccharides and divalent cations: The egg-box model[J].
            [9]   SUN C H (孙朝辉). Preparation  of absorption material  based on   FEBS Letters, 1973, 32(1): 195-198.
                 sodium alginate composite and adsorption of heavy metal ions[D].   [19]  HUANG Y G (黄耀葛). Preparation of calcium alginate aerogel and
                 Xi'an: Chang'an University (长安大学), 2019.          its adsorption on heavy  metal ions[D].  Anqing: Anqing Normal
            [10]  LIU L (刘立). Preparation and absorption performance of biochar-based   University (安庆师范大学), 2017.
                           2+
                                  2+
                 adsorbent for  Pb  and Cu  removal[D]. Guangzhou:  Guangzhou   [20]  CHENG F F (成芳芳). Study on the adsorption performance of
                 University (广州大学), 2019.                          alginate fiber to heavy metal ions[D]. Qingdao: Qingdao University
            [11]  WANG Z Q, HUANG Y G, WANG M, et al. Microporous calcium   (青岛大学), 2010.
                                      2+
                 alginate aerogel as sorbent for Pb  removal from water  media[J].   [21]  FU M L (傅明连), FANG J B (方江波), CHEN Z X (陈彰旭), et al.
                 Journal  of Environmental Chemical Engineering,  2016, 4(3):   Adsorption performance research of chitosan/sodium  alginate
                                                                               2+
                 3185-3192.                                        composite gel on Cu  ion[J]. New Chemical Materials (化工新型材
            [12]  YAO  W H (姚温浩), YU F (于飞), MA J (马杰). Preparation of   料), 2016, 44(12): 164-166.

            (上接第 16 页)                                             Chemistry Research, 2017, 56(26): 7462-7467.
            [46]  WANG B H, LU L, GE B M, et al.  Hydrophobic and hierarchical   [56]  ZUO  Y, WANG  M L, SONG W  C,  et al. Characterization and
                 modification of  TS-1 and application for propylene epoxidation[J].   catalytic performance of deactivated and regenerated TS-1 extrudates
                 Journal of Porous Materials, 2018, 26(1): 1-11.   in a pilot plant of propene epoxidation[J]. Industrial & Engineering
            [47]  WANG B H, HAN H H, GE B M, et al. An efficient hydrophobic   Chemistry Research, 2012, 51(32): 10586-10594.
                 modification of TS-1 and application for epoxidation of propylene[J].   [57]  WANG Q F, WANG L, CHEN J X, et al. Deactivation and regeneration
                 New Journal of Chemistry, 2019, 43(26): 10390-10397.   of titanium silicalite catalyst for epoxidation of propylene[J]. Journal
            [48]  ZHAO D S (赵地顺), ZHANG Y (张妍), REN P B (任培兵), et al.   of Molecular Catalysis A: Chemical, 2007, 273(1/2): 73-80.
                 Ammoxidation of methyl ethylketone catalyzed by modified TS-1[J].   [58]  ALBA-RUBIO A C, FIERRO J L G, LEON-REINA L, et al. Oxidation
                 Chemical Engineering (化学工程), 2011, 39(1): 53-57.   of furfural in aqueous H 2O 2 catalysed by titanium silicalite: Deactivation
            [49]  ARCA V, BOSCOLETTO A B, FRACASSO N, et al. Epoxidation of   processes and role of extraframework Ti oxides[J]. Applied Catalysis
                 propylene on Zn-treated TS-1 catalyst[J]. Journal of Molecular   B: Environmental, 2017, 202: 269-280.
                 Catalysis A: Chemical, 2006, 243(2): 264-277.   [59]  CHEN  L  Y, CHUAH G K, JAENICKE S. Propylene epoxidation
            [50]  FANG X Q, WU  L Z, YU Y K,  et al. Improving the catalytic   with hydrogen peroxide catalyzed by molecular sieves containing
                 performance of  TS-1 through Zn(AC) 2 modification[J]. Catalysis   framework titanium[J]. Molecular Catalysis, 1998, 132(2): 281-292.
                 Communications, 2018, 114: 1-5.               [60]  TAO D Z (陶德志), DONG H L (董海龙), YU X G (于新功), et al.
            [51]  LI H (李颢), WANG Y (王勇), ZHANG  Y (张宇),  et al. The   Regeneration method of deactivated titanium silicate molecular sieve
                 epoxidation of 1-hexene to 1,2-epoxyhexane by Fe-TS-1 catalyst[J].   TS-1: CN109534355A[P]. 2019-03-29.
                 Speciality Petrochemicals (精细石油化工), 2014, 31(1): 28-33.   [61]  WANG M Z (王梅正), LIN M (林民), ZHU B (朱斌). Advances in
            [52]  LEE W S, CEM  AKATAY M, STACH E A,  et al. Reproducible   study of deactivation and regeneration of titanium silicalite[J]. Chemical
                 preparation of Au/TS-1 with high reaction rate for gas phase epoxidation   Industry and Engineering Progress (化工进展), 2007, 26(9):  1258-
                 of propylene[J]. Journal of Catalysis, 2012, 287: 178-189.   1262.
            [53]  FENG X, DUAN X Z, QIAN G, et al. Au nanoparticles deposited on   [62]  THIELE G, HOFEN W, SAUER J, et al. Process for the epoxidation
                 the external  surfaces of TS-1: Enhanced stability and activity for   of olefins: US2002091276A1[P]. 2002-07-11.
                 direct propylene epoxidation with H 2 and O 2[J]. Applied Catalysis B   [63]  KWAK B S, OH  S H, KIM T J,  et al. Method of regeneration of
                 Environmental, 2014, 150/151: 396-401.            titanium-containing molecular sieve catalyst: US2009018291A1[P].
            [54]  WANG L N, LIN P R, LIU S F. Research on direct epoxidation of   2009-01-15.
                 propylene on modified Au/TS-1 catalysts[J]. IOP Conference Series:   [64]  CHANG T. Process for epoxidation propylene: WO9901445A1[P].
                 Earth and Environmental Science, 2019, 218(1): 012155.   1999-01-14.
            [55]  ZUO Y, LIU M, MA M T, et al. Improved catalytic performance for   [65]  WANG G L (王根林), DING K H (丁克鸿), XU L (徐林),  et al.
                 1-butene epoxidation over titanium silicalite-1 extrudates by using   Regeneration method of deactivated titanium silicalite molecular
                 SBA-15 or carborundum  as additives[J]. Industrial & Engineering   sieve catalyst in HPPO process: CN110152726A[P]. 2019-08-23.
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