Page 195 - 《精细化工》2020年第11期
P. 195

第 11 期               方   钫,等:  聚天冬氨酸/邻氨基酚磺酸接枝共聚物的合成及阻垢性能                                ·2341·


               2+
            Ca 质量浓度为 300  mg/L、温度为 70  ℃、处理时间                      2010, 30(2): 57-59.
                                                               [10]  FU  C  E  (符嫦娥), ZHOU Y  M (周钰明), XUE M W (薛蒙伟).
            24  h、pH=7 时,PASP/3A4HBSA 对 CaCO 3 的阻垢率
                                                                   Novel  phosphorus-free  and  nitrogen-free  antiscalant  for  calcium
            达到 92.7%。                                              phosphate  and  Fe(Ⅲ)[J].  CIESC  Journal  (化工学报), 2011, 62(2):
                                                                   525-531.
                (2)SEM、XRD 结果表明,阻垢剂对 CaCO 3
                                                               [11]  LI Y J (李义久), ZENG X P (曾新平), WU B (吴斌). Synthesis of
            晶体的形态和增长有很大影响,可以使晶体发生畸                                 dispersing scale inhibitor TJ-102 and its scale inhibition performance
            变 ,减慢 晶体 的增长 速率 。 FTIR 分 析表明 ,                         [J]. Technology of Water Treatment (水处理技术), 2000, 26(5): 289-292.
                                    2+
            PASP/3A4HBSA 通过与 Ca 螯合形成稳定、易溶解                     [12]  Determination  of  scale  inhibition  performance  of  water  treatment
                                                                   agents—Calcium carbonate precipitation method: GB/T16632—2008[S].
            的螯合物,从而阻止沉淀的形成。                                        Beijing: China Standard Press (中国标准出版社), 2008: 1-8.
                                                               [13]  YU  T  (于涛),  DING  W  (丁伟),  QU  G  M  (曲广淼).  Oil  field
                (3)与 PASP 相比,PASP/3A4HBSA 对 CaCO 3
                                                                   chemicals[M]. Beijing: Petroleum industry press (石油工业出版社),
            的阻垢率因为引入大量的螯合基团磺酸基、羟基、                                 2002: 75-79.
            氨基而得到大幅度提高。                                        [14]  HUO Y  N (霍宇凝), LIU S (刘珊), LU Z (陆柱). Research of the
                                                                   scale  inhibition  performance  of  polyaspartic  acid  to  calcium
            参考文献:                                                  carbonate[J].  Technology  of  Water  Treatment  (水处理技术),  2001,
                                                                   27(1): 26-29.
            [1]   WEI  H,  SHEN  H,  WANG  H  H,  et al.  Influence  of  segmented   [15]  XUE X X, FU C G, LI N, et al. Performance of a non-phosphorus
                 copolymers  on  the  crystallization  and  aggregation  of  calcium   antiscalant on inhibition of calcium sulfate precipitation[J]. Water Sci
                 carbonate[J]. Cryst Growth, 2007, 303(3): 537-545.     Technol, 2012, 6(6): 193-200.
            [2]   LIU  Y,  ZOU  C  J,  LI  C  Q,  et al.  Evaluation  of  β-cyclodextrin   [16]  MARTINOD  A,  EUVRARD  A,  FOISSY  A,  et al.  Progressing  the
                 modified natural chitosan as a green inhibitor for carbon steel in acid   understanding  of  chemical  inhibition  of  mineral  scale  by  green
                 solutions[J].  Industrial  &  Engineering  Chemistry  Research,  2016,   inhibitors[J]. Desalination, 2008, 220(6): 345-352.
                 377(12): 28-33.                               [17]  KETRANE  R,  SAIDANI  B,  GIL  O.  Efficiency  of  five  scale
            [3]   SHEN Z H, LI J S, XU K, et al. The effect of synthesized hydrolyzed   inhibitors on calcium carbonate precipitation from hard water effect
                 polymaleic  anhydride  (HPMA)  on  the  crystal  of  calcium   of temperature and ncentration[J]. Desalination, 2009, 249(3): 1397-
                 carbonate[J]. Desalination, 2012, 284(2): 238-244.     1404.
            [4]   XIE  A  J,  SHEN  X  H,  ZHANG  C  Y.  Crystal  growth  of  calcium   [18]  LING  L,  ZHOU  Y  M,  HUANG  J  Y.  Carboxylate-terminated
                 carbonate  with  various  morphologies  in  different  amino  acid   double-hydrophilic  block  copolymer  as  an  effective  and  environmental
                 systems[J]. Crystal Growth, 2005, 285(9): 436-443.     inhibitor in cooling water systems[J]. Desalination, 2012, 304(1): 33-40.
            [5]   YANG J, SONG L X, DU F Y, et al. Formation, structure and thermal   [19]  ANTONIA K, AGGELIKI S, KONSTANYINOS D. Being“green”in
                 properties of the ternary aggregate of polyethylene glycol, β-cyclodextrin   chemical  water treatment  technologies  challenges  and developments[J].
                 and ferrocene[J]. Supramol Chem, 2012, 24(11): 762-770.     Desalination, 2008, 35(7): 223-235.
            [6]   WANG Q Q (王钦权), WANG Y H (王远红), LYU Z H (吕志华).   [20]  ZHAO  Y  S,  SONG  H  M,  LIU  Y  M.  Study  on  synthesis  of
                 Synthesis  of  O-carboxymethyl  chitosan  and  its  structure   poly(aspartic) acid derivatives with hydroxylin waterind[J]. Modem
                 characterization[J]. Journal of Ocean University of China (中国海洋  Chernical, 2008, 28(9): 56-61.
                 大学学报), 2011, 41(S1): 356-358.                 [21]  LI  X  Q  (李晓琴).  Infrared  spectrometric  determination  of  the
            [7]   WANG X H (王小虎), ZHAI G Y (翟桂元), ZHAO W D (赵维电).   complexing  ability  of  humic  acid  and  metal[J].  Environmental
                 Synthesis  process  research  of  polysuccinimide[J].  Shanghai  Chemical   Protection of Xinjiang (新疆环境保护), 1987, 4(4): 46-51 .
                 Industry (上海化工), 2014, 39(9): 1-3.            [22]  SONG  L  X,  DU  F  Y,  GUO  X  Q.  Formation,  characterization,  and
            [8]   GONG R (弓瑞), LYU S H (吕生华), YAN X L (闫小亮). Synthesis   thermal degradation behavior of a novel tricomponent aggregate of
                 of HRP catalytic starch-phenolic graft polymer [J]. Fine Chemicals   β-cyclodextrin,ferrocene,and poly-propylene glycol[J]. Phys Chem,
                 (精细化工), 2012, 29(4): 374-378.                     2010, 114(4): 1738-1744.
            [9]   GAO Y H (高玉华), LIU Z F (刘振法), TIAN C L (田彩莉). Effect   [23]  LU Y B (卢耀柏), YUAN B (袁博), LYU D (吕东). Measurement of
                 of  modification  polyaspartic  acid  on  the  performance  of  scale   grafting rate of chitosan-polyacrylamide grafted copolymer[J]. Fine
                 inhibition and dispersion[J]. Industrial Water Treatment (工业水处理),     Chemicals (精细化工), 2009, 26(8): 879-882.


            (上接第 2312 页)                                           O-methyl  analogues  of  naringenin  and  apigenin[J].  Bulletin  of  the
                                                                   Korean Chemical Society, 2007, 28(12): 2527-2530.
            [9]   OGNIK  K,  CHOLEWINSKA  E,  SEMBRATOWICZ  I,  et al.  The   [14]  SPOERLEIN G C, MILIUS W, OBENAUF J, et al. A new domino
                 potential of using plant antioxidants to stimulate antioxidant mechanisms   oxidation-rearrangement  of  2,3-dihydrowogonin  to  negletein[J].
                 in poultry[J]. World's Poultry Science Journal, 2016, 72(2): 291-298.     Tetrahedron Letters, 2016, 57(14): 1560-1562.
            [10]  FANG H L, LI W L, LIANG C Y, et al. Chemical constituents from   [15]  GANOT  N,  MEKER  S,  REYTMAN  L,  et al.  Anticancer  metal
                 above-ground part of Mentha haplocalyx after extracting volatile oil[J].   complexes: Synthesis and cytotoxicity evaluation by the MTT assay
                 Journal of Plant Resources and Environment, 2007, 16(2): 73-74.    [J]. Jove-Journal of Visualized Experiments, 2013, 10(81): e50767.
            [11]  OESTERLE  A,  WANDER  G.  Über  das  “hesperidin”  einiger   [16]  LI  W  J  (李文杰),  WANG  J  R  (王景荣),  HE  X  S  (何性顺),  et al.
                 pflanzen[J]. Helvetica Chimica Acta, 1925, 8(1): 519-536.   Spectroscopic characteristics and identification of molecular structure
            [12]  BOVICELLI  P,  D'ANGELO  V,  COLLALTO  D,  et al.  Efficient   of  diosmin[J].  Physical  Testing  and  Chemical  Analysis  (Part  B:
                 synthesis  of  polyoxygenated  flavones  from  naturally  occurring   Chemical Analysis) (理化检验-化学分册), 2013, 49(8): 897-901.
                 flavanones[J]. Journal of Pharmacy and Pharmacology, 2008, 59(12):   [17]  MADUNIC  J,  MADUNIC  I  V,  GAJSKI  G,  et al.  Apigenin:  A
                 1697-1701.                                        dietary  flavonoid  with  diverse  anticancer  properties[J].  Cancer
            [13]  KIM J, PARK K S, LEE C, et al. Synthesis of a complete series of   Letters, 2018, 413: 11-22.
   190   191   192   193   194   195   196   197   198   199   200