English
新闻公告
More
化学进展 2005, Vol. 17 Issue (06): 1034-1040 前一篇   后一篇

• 综述与评论 •

水解聚合铝溶液中Al30形态的研究*

栾兆坤**;陈朝阳;李燕中   

  1. 中国科学院生态环境研究中心 环境水质学国家重点实验室 北京 100085
  • 收稿日期:2004-11-01 修回日期:2005-01-01 出版日期:2005-11-24 发布日期:2009-04-02
  • 通讯作者: 栾兆坤
  • 基金资助:

    国家863重大水专项基金;国家自然科学基金(No. 20577061)资助项目 No.2002AA601290

Progress in the Species of Al30 in Hydrolytic Polymeric Aluminum Solutions

Luan Zhaokun**;Chen Zhaoyang;Li Yanzhong   

  1. State Key Laboratory of Environmental Aquatic Chemistry , Research Center for Eco2Environmental Sciences,Chinese Academy of Sciences,Beijing 100085,China
  • Received:2004-11-01 Revised:2005-01-01 Online:2005-11-24 Published:2009-04-02
  • Contact: Luan Zhaokun
水解聚合铝形态一直是分析、催化、土壤、地球化学、新材料、环境科学和生物毒理学等众多领域研究的前沿和热点。Keggin 结构的Al30 形态是迄今为止发现的电荷最高的水解铝聚合阳离子,具有独特的分子结构和纳米分子尺寸,它对催化化学、新型功能材料、高效絮凝剂的开发以及铝的水解聚合转化规律研究具有重要意义。本文主要论述了Al30形态的形成、形态分析方法、结构模型以及形成机理等方面的最新研究进展,并对水解聚合铝溶液的研究发展趋势进行了展望。
The species distribution in hydrolytic polymeric aluminum solutions is a research focus in the fields of analysis ,catalysis,agrology,geochemistry,new materials,environmental science ,biotoxicology,etc.The species of Al30 with a structure of Keggin is the biggest polycation ever characterized and is the highest charged polycation discovered so far in hydrolytic polymeric aluminum solutions.It is unique by its molecular structure and size.The molecular size is in the range of nanometer,which is significant for catalytic chemistry,the development of new functional materials and high- effective coagulants and the study of hydrolysis,polymerization and transformation of aluminum salts.The advances in the formation,species analytic methods ,molecular structure mode and formation mechanism of Al30 were reviewed in this paper,and the further research trends of hydrolytic polymeric aluminum solutions were reviewed.

中图分类号: 

()

[ 1 ] Furrer G, Phillips B L , Ulrich K U , et al1 Science , 2002 , 297 :2245 —2247
[ 2 ] Hunter D , Ross D S1 Science , 1991 , 251 : 1056 —1058
[ 3 ] Nordstrom D K, Ball J W. Science , 1986 , 232 : 54 —56
[ 4 ] Phillips B L , Casey W H , Karlsson M. Nature , 2000 , 404 :379 —382
[ 5 ] Wang M, Muhammed M. Nanostructured Materials , 1999 , 11(8) : 1219 —1229
[ 6 ] Aceman S , Lahav N , Yariv S. Appl . Clay Sci . , 2000 , 17 : 99 —126
[ 7 ] Bertsch P M, Parker D R. The Environment Chemistry of Aluminum. Florids : Lewis Publishers , 1995. 117 —168
[ 8 ] Ma J F , Zhang S J , Matsumoto H , et al . Nature , 1997 , 390 :569 —570
[ 9 ] Occelli M L , Auroux A , Ray G. J . Micropor. Mesopor. Mater. ,2000 , 39 : 43 —56
[10] Fuente J M, Rodriguez V R. Science , 1997 , 276 : 1566 —1568
[11] Emmanuelle M, Agnès M, Laurent J M. Appl . Clay Sci . , 1998 ,13 : 165 —185
[12] Bi S P , Yang X D , Zhang F P , et al . Fresenius J . Anal .Chem. , 2001 , 370 : 984 —996
[13] Jander G, Winkel A. Z. Anorg. Chem. , 1931 , 200 : 257
[14] 汤鸿霄( Tang H X) . 环境科学学报( Acta Scientiae Circumstantiae) , 1998 , 18(1) : 1 —10
[15] Bi S P , Wang C Y, Cao Q , et al . Coord. Chem. Rev. , 2004 ,248 : 441 —455
[16] Johansson G. Acta Chem. Scand. , 1960 , 14 : 771 —773
[17] Johansson G, Lundgren G, Sillen L G, et al . Acta Chem.Scand. , 1962 , 16 : 403 —420
[18] Bertsch P M, Layton W J , Barnhisel R I. Soil Sci . Soc. Am. J . ,1986 , 50 : 1449 —1453
[19] Hsu P H , Bates T F. Mineral . Mag. , 1964 , 33 : 749 —768
[20] Parker D R , Bertsch P M. Environ. Sci . Technol . , 1992 , 26(5) : 914 —921
[21] Bottero J Y, Axelos M, Tchoubar D , et al . J . Colloid Interface Sci . , 1987 , 1 : 47 —57
[22] Kloprogge J T , Seykens D , Geus J W, et al . J . Non-Crystal .Solids , 1993 , 160 : 144 —151
[23] Kloprogge J T , Seykens D , Geus J W, et al . J . Non-Crystal .Solids , 1992 , 142 : 87 —93
[24] Furrer G, Ludwig C , Schindler P W J . Colloid Interface Sci . ,1992 , 149 : 56 —67
[25] Wang S L , Wang M K, Tzou Y M. Colloids and Surfaces A:Physicochem. Eng. Aspects , 2003 , 231 : 143 —157
[26] Molis E , Thomas F , Bottero J Y, et al . Langmuir , 1996 , 12 :3195 —3200
[27] Parker W O , Millini R , Kiricsi I , et al . Inorg. Chem. , 1997 ,36 : 571 —575
[28] Perry C C , Shafran K L. J . Inorg. Biochem. , 2001 , 87 : 115 —124
[29] Exall K N , Vanloon G W. Water Research , 2003 , 37 : 3341 —3350
[30] Akitt J W, Elders J M. J . Chem. Soc. , Dalton Trans. , 1988 ,1347 —1355
[31] Akitt J W, Elders J M, Fontaine X L R , et al . J . Chem. Soc. ,Dalton Trans. , 1989 , 1889 —1895
[32] Akitt J W, Farthing A. J . Chem. Soc. , Dalton Trans. , 1981 ,1606 —1624
[33] Akitt J W. Progress in NMR Spectroscopy , 1989 , 21 : 1 —149
[34] Fitzgerald J J , Johnson L E. J . Magn. Reson. , 1989 , 84 : 121 —133
[35] Akitt J W, Farthing A. J . Magn. Reson. , 1978 , 32 : 345 —352
[36] Akitt J W, Farthing A. J . Chem. Soc. , Dalton Trans. , 1981 ,1624 —1628
[37] Fu G, Nazar L F. Chem. Mater. , 1991 , 3 : 602 —610
[38] Allouche L , Gérardin C , Loiseau T , et al . Angew. Chem. Int .Ed. , 2000 , 39(3) : 511 —514
[39] Allouche L , Taulelle F. Inorg. Chem. Commun. , 2003 , 6 :1167 —1170
[40] Nazar L F , Rowsell J . J . Am. Chem. Soc. , 2000 , 122 : 3777 —3778
[41] Allouche L , Huguenard C , Taulelle F. J . Phys. Chem. Solids ,2001 , 62 : 1525 —1531
[42] Phillips B L , Lee A , Casey W H. Geochim. Cosmochim. Acta ,2003 , 67(15) : 2725 —2733
[43] Akitt J W, Mann B E. J . Magn. Reson. , 1981 , 44 : 584 —589
[44] Schonherr S , Gorz H , Gessner W, et al . Z. Anorg. Allg.Chem. , 1981 , 476 : 1985
[45] Schonherr S , Gorz H , Bertram R , et al . Z. Anorg. Allg.Chem. , 1983 , 502 : 113
[46] Wood T E , Siedle A R , Hill J R , et al . Mat . Res. Soc. Symp.Proc. , 1990 , 180 : 97 —166
[47] Turner R T. Can. J . Chem. , 1976 , 54 : 1528 —1534
[48] Tsai P P , Hsu P H. J . Am. Soil Sci . Soc. , 1984 , 48 : 59 —65
[49] Fitzgerald J J . in Antiperspirants and Deodorants (eds. Laden K,Felge C) . New York : Dekker , 1988. 119 —291
[50] Nazar L F , Fu G, Bain A D. J . Chem. Soc. , Chem. Commun. ,1992 : 251 —253
[51] 栾兆坤(Luan Z K) , 汤鸿霄(Tang H X) , 于忱非( Yu C F) .环境科学学报(Acta Scientiae Circumstantiae) , 1997 , 17 (3) :321 —327
[52] Xu Y, Wang D S , Liu H , et al . Colloids and Surfaces A:Physicochem. Eng. Aspects , 2003 , 231 : 1 —9
[53] Bradly S M, Kydd R A , Fyfe C A. Inorg. Chem. , 1992 , 31 :1181 —1185
[54] 初永宝(Chu Y B) , 高宝玉(Gao B Y) , 岳钦艳(Yue Q Y) 等.环境科学(Environmental Science) , 2004 , 25(5) : 75 —79
[55] 赵华章(Zhao H Z) , 栾兆坤(Luan Z K) , 苏永渤(Su Y B) 等.高等学校化学学报(Chem. J . Chinese Universities) , 2002 , 23(5) : 751 —755
[56] 杨明生(Yang M S) , 李添宝(Li T B) , 徐秉坤(Xu B K) . 分析化学(Chinese J . Anal . Chem. ) , 1996 , 24(6) : 661 —664
[57] 王先龙(Wang X L) , 邹公伟(Zou G W) , 毕树平(Bi S P) . 无机化学学报(Chinese J . Inorg. Chem. ) , 2000 , 16(4) : 548 —560
[58] 王趁义(Wang C Y) , 毕树平(Bi S P) . 分析科学学报(J .Anal . Sci . ) , 2004 , 20(3) : 317 —321
[59] 杨小弟(Yang X D) , 章福平(Zhang F P) , 王先龙(Wang XL)等. 分析化学( Chinese J . Anal . Chem. ) , 2003 , 31 ( 9) :1131 —1138
[60] Lambert J , Buddrus J , Burda P. Fresenius J . Anal . Chem. ,1995 , 120 : 809 —815
[61] Faust B C , Labiosa W B , Dai K, et al . Geochim. Cosmochim.Acta , 1995 , 59(13) : 2651 —2661
[62] Bertsh P M, Barnhisel R I , Thomas G W. Anal . Chem. , 1986 ,58 : 2583 —2585
[63] Akitt J W, Greenwood N N , Lester G D. J . Chem. Soc. (A) ,1969 , 803 —807
[64] Akitt J W, Farthing A. J . Chem. Soc. , Dalton Trans. , 1981 :1233 —1234
[65] Allouche L , Taulelle F. Chem. Commun. , 2003 , 2084 —2085

[1] 何安恩, 解姣姣, 苑春刚. 大气颗粒物重金属形态分析[J]. 化学进展, 2021, 33(9): 1627-1647.
[2] 苑春刚,X.Chris Le. 砷形态分析[J]. 化学进展, 2009, 21(0203): 467-473.
[3] 周瑛,叶丽,竹鑫平. HPLC-ICP-MS在食品中硒和砷形态分析及其生物有效性研究中的应用*[J]. 化学进展, 2007, 19(06): 982-995.