磷钼钨杂多酸修饰金属有机骨架MOF-5复合材料吸附亚甲基蓝

龚文朋 柯晓芬 李志鹏 田超强 杨水金

引用本文: 龚文朋, 柯晓芬, 李志鹏, 田超强, 杨水金. 磷钼钨杂多酸修饰金属有机骨架MOF-5复合材料吸附亚甲基蓝[J]. 应用化学, 2016, 33(9): 1047-1055. doi: 10.11944/j.issn.1000-0518.2016.09.160058 shu
Citation:  GONG Wenpeng, KE xiaofen, LI Zhipeng, TIAN Chaoqiang, YANG Shuijin. Adsorption of Methylene Blue by Phosphomolybdiumtungstic Acid Decorated Metal Organic Framework MOF-5[J]. Chinese Journal of Applied Chemistry, 2016, 33(9): 1047-1055. doi: 10.11944/j.issn.1000-0518.2016.09.160058 shu

磷钼钨杂多酸修饰金属有机骨架MOF-5复合材料吸附亚甲基蓝

    通讯作者: 杨水金,教授;Tel:0714-6515602;E-mail:yangshuijin@163.com;研究方向:无机功能材料
  • 基金项目:

    国家自然科学基金(21171053);湖北省自然科学基金重点项目(2014CFA131) 

    湖北师范学院文理学院本科生科研项目(201502)资助 

摘要: 采用水热合成法,在合成金属有机骨架MOF-5的过程中引入活性组分磷钼钨杂多酸(H6P2Mo15W3O62),制备出一种新型吸附剂H6P2Mo15W3O62/MOF-5。利用H6P2Mo15W3O62/MOF-5材料对亚甲基蓝溶液进行了材料的吸附性能研究,探讨了亚甲基蓝溶液的初始pH值和初始浓度以及不同吸附温度对吸附量的影响。结果表明,在较低的温度和亚甲基蓝溶液较低的初始pH值的条件下,有利于H6P2Mo15W3O62/MOF-5对亚甲基蓝的吸附。实验结果能够较好地符合Langmuir吸附等温式以及二级动力学模型,对亚甲基蓝的最大吸附量可达401.6 mg/g。热力学参数ΔG< 0、ΔH< 0和ΔS >0,表明H6P2Mo15W3O62/MOF-5对亚甲基蓝的吸附过程是自发、放热的。此外,还探讨了H6P2Mo15W3O62/MOF-5对甲基紫、孔雀石绿、罗丹明B和甲基橙等其它染料的吸附性能,结果表明,H6P2Mo15W3O62/MOF-5对阳离子染料有较好的吸附效果。

English

  • 
    1. [1] Gan Y Q,Tian N,Tian X K,et al.Adsorption Behavior of Methylene Blue on Amine-functionalized Ordered Mesoporous Alumina[J].J Porous Mater,2015,22(1):147-155.[1] Gan Y Q,Tian N,Tian X K,et al.Adsorption Behavior of Methylene Blue on Amine-functionalized Ordered Mesoporous Alumina[J].J Porous Mater,2015,22(1):147-155.

    2. [2] Ai L,Zhang C,Liao F,et al.Removal of Methylene Blue from Aqueous Solution with Magnetite Loaded Multi-wall Carbon Nanotube:Kinetic,Isotherm and Mechanism Analysis[J].Hazard Mater,2011,198(2):282-290.[2] Ai L,Zhang C,Liao F,et al.Removal of Methylene Blue from Aqueous Solution with Magnetite Loaded Multi-wall Carbon Nanotube:Kinetic,Isotherm and Mechanism Analysis[J].Hazard Mater,2011,198(2):282-290.

    3. [3] Srinivasan M,White T.Degradation of Methylene Blue by Three-dimensionally Ordered Macroporous Titania[J].Environ Sci Technol,2007,41(12):4405-4409.[3] Srinivasan M,White T.Degradation of Methylene Blue by Three-dimensionally Ordered Macroporous Titania[J].Environ Sci Technol,2007,41(12):4405-4409.

    4. [4] ZHANG Deyi,MA Ying,WANG Yi,et al.Preparation and Characterization of a Carbon/Fly Ash Composite Adsorbent[J].Chinese J Appl Chem,2011,28(8):942-948(in Chinese).张德懿,马颖,王毅,等.C/粉煤灰复合吸附材料的制备及表征[J].应用化学,2011,28(8):942-948.[4] ZHANG Deyi,MA Ying,WANG Yi,et al.Preparation and Characterization of a Carbon/Fly Ash Composite Adsorbent[J].Chinese J Appl Chem,2011,28(8):942-948(in Chinese).张德懿,马颖,王毅,等.C/粉煤灰复合吸附材料的制备及表征[J].应用化学,2011,28(8):942-948.

    5. [5] Xue A,Zhou S,Zhao Y,et al.Effective NH2-grafting on Attapulgite Surfaces for Adsorption of Reactive Dyes[J].Hazard Mater,2011,194(5):7-14.[5] Xue A,Zhou S,Zhao Y,et al.Effective NH2-grafting on Attapulgite Surfaces for Adsorption of Reactive Dyes[J].Hazard Mater,2011,194(5):7-14.

    6. [6] Singh K P,Mohan D,Sinha S,et al.Color Removal from Wastewater Using Low-cost Activated Carbon Derived from Agricultural Waste Material[J].Ind Eng Chem Res,2003,42(9):1965-1976.[6] Singh K P,Mohan D,Sinha S,et al.Color Removal from Wastewater Using Low-cost Activated Carbon Derived from Agricultural Waste Material[J].Ind Eng Chem Res,2003,42(9):1965-1976.

    7. [7] Liu X X,Luo J,Zhu Y T,et al.Removal of Methylene Blue from Aqueous Solutions by an Adsorbent Based on Metal-organic Framework and Polyoxometalates[J].Alloys Compd,2015,648:986-993.[7] Liu X X,Luo J,Zhu Y T,et al.Removal of Methylene Blue from Aqueous Solutions by an Adsorbent Based on Metal-organic Framework and Polyoxometalates[J].Alloys Compd,2015,648:986-993.

    8. [8] Wang F,Li F L,Xu M M,et al.Facile Synthesis of a Ag (Ⅰ)-doped Coordination Polymer with Enhanced Catalytic Performance in the Photodegradation of Azo Dyes in Water[J].Mater Chem A,2015,3(11):5908-5916.[8] Wang F,Li F L,Xu M M,et al.Facile Synthesis of a Ag (Ⅰ)-doped Coordination Polymer with Enhanced Catalytic Performance in the Photodegradation of Azo Dyes in Water[J].Mater Chem A,2015,3(11):5908-5916.

    9. [9] Tan Y X,He Y P,Wang M.A Water-stable Zeolite-like Metal-organic Framework for Selective Separation of Organic Dyes[J].RSC Adv,2014,4(3):1480-1483.[9] Tan Y X,He Y P,Wang M.A Water-stable Zeolite-like Metal-organic Framework for Selective Separation of Organic Dyes[J].RSC Adv,2014,4(3):1480-1483.

    10. [10] Park D R,Song J H,Lee S H,et al.Redox Properties of H3PMoXW12-XO40 and H6P2MoXW18-XO62 Heteropolyacid Catalysts and Their Catalytic Activity for Benzyl Alcohol Oxidation[J].Appl Catal A,2008,349(1/2):222-228.[10] Park D R,Song J H,Lee S H,et al.Redox Properties of H3PMoXW12-XO40 and H6P2MoXW18-XO62 Heteropolyacid Catalysts and Their Catalytic Activity for Benzyl Alcohol Oxidation[J].Appl Catal A,2008,349(1/2):222-228.

    11. [11] Li R,Ren X Q,Zhao J S,et al.Polyoxometallates Trapped in a Zeolitic Imidazolate Framework Leading to High Uptake and Selectivity of Bioactive Molecules[J].J Mater Chem A,2014,2(7):2168-2173.[11] Li R,Ren X Q,Zhao J S,et al.Polyoxometallates Trapped in a Zeolitic Imidazolate Framework Leading to High Uptake and Selectivity of Bioactive Molecules[J].J Mater Chem A,2014,2(7):2168-2173.

    12. [12] WANG Enbo,GAO Lihua,LIU Jingfu,et al.Preparation and Properties of the Molybdovanadophosphoric Acids with Dawson Srructure[J].Acta Chim Sin,1988,46(8):757-762(in Chinese).王恩波,高丽华,刘景福,等.具有Dawson结构的钼钒磷杂多酸的制备和性质研究[J].化学学报,1988,46(8):757-762.[12] WANG Enbo,GAO Lihua,LIU Jingfu,et al.Preparation and Properties of the Molybdovanadophosphoric Acids with Dawson Srructure[J].Acta Chim Sin,1988,46(8):757-762(in Chinese).王恩波,高丽华,刘景福,等.具有Dawson结构的钼钒磷杂多酸的制备和性质研究[J].化学学报,1988,46(8):757-762.

    13. [13] Liu Y W,Liu S M,Liu S X,et al.Crystal Facets Make a Profound Difference in Polyoxometalate-Containing Metal-Organic Frameworks as Catalysts for Biodiesel Production[J].J Am Chem Soc,2015,137(39):12697-12703.[13] Liu Y W,Liu S M,Liu S X,et al.Crystal Facets Make a Profound Difference in Polyoxometalate-Containing Metal-Organic Frameworks as Catalysts for Biodiesel Production[J].J Am Chem Soc,2015,137(39):12697-12703.

    14. [14] Panellab H.Hydrogen Physisorption in Metal Organic Porous Crystals[J].Adv Mater,2005,7(5):538-541.[14] Panellab H.Hydrogen Physisorption in Metal Organic Porous Crystals[J].Adv Mater,2005,7(5):538-541.

    15. [15] Sun R Q,Sun L B,Chun Y,et al.Catalytic Performance of Porous Carbons Obtained by Chemical Activation[J].Carbon,2008,46(3):1757-1764.[15] Sun R Q,Sun L B,Chun Y,et al.Catalytic Performance of Porous Carbons Obtained by Chemical Activation[J].Carbon,2008,46(3):1757-1764.

    16. [16] Luo H M,Zhao X,Chen N L,et al.Research on the Adsorptive Mechanism and Capability of Modified Coke Powder to Methylene Blue[J].Ion Exch Adsorpt,2011,27(2):152-159.[16] Luo H M,Zhao X,Chen N L,et al.Research on the Adsorptive Mechanism and Capability of Modified Coke Powder to Methylene Blue[J].Ion Exch Adsorpt,2011,27(2):152-159.

    17. [17] Eftekhari S,Habibi-Y A,Sohrabnezhand.Application of AlMCM-41 for Competitive Adsorption of Methylene Blue and Rhodamine B:Thermodynamic and Kinetic Studies[J].Hazard Mater,2010,78(1/2/3):349-355.[17] Eftekhari S,Habibi-Y A,Sohrabnezhand.Application of AlMCM-41 for Competitive Adsorption of Methylene Blue and Rhodamine B:Thermodynamic and Kinetic Studies[J].Hazard Mater,2010,78(1/2/3):349-355.

    18. [18] Langmuir I.The Adsorption of Gases on Plane Surfaces of Glass,Mica and Platinum[J].J Am Chem Soc,1918,40(9):1361-1403.[18] Langmuir I.The Adsorption of Gases on Plane Surfaces of Glass,Mica and Platinum[J].J Am Chem Soc,1918,40(9):1361-1403.

    19. [19] Hameed B H.Equilibrium and Kinetic Studies of Methyl Violet Sorption by Agricultural Waste[J].Hazard Mater,2008,154(1/2/3):204-212.[19] Hameed B H.Equilibrium and Kinetic Studies of Methyl Violet Sorption by Agricultural Waste[J].Hazard Mater,2008,154(1/2/3):204-212.

    20. [20] Chen S H,Zhang J,Zhang C L,et al.Equilibrium and Kinetic Studies of Methyl Orange and Methyl Violet Adsorption on Activated Carbon Derived from Phragmites Australis[J].Desalination,2010,252(1/2/3):149-156.[20] Chen S H,Zhang J,Zhang C L,et al.Equilibrium and Kinetic Studies of Methyl Orange and Methyl Violet Adsorption on Activated Carbon Derived from Phragmites Australis[J].Desalination,2010,252(1/2/3):149-156.

  • 加载中
计量
  • PDF下载量:  1
  • 文章访问数:  612
  • HTML全文浏览量:  53
文章相关
  • 收稿日期:  2016-02-02
  • 网络出版日期:  2016-04-20
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

/

返回文章