期刊文献+

碳纤维负载铁酞菁催化氧化有机污染物的性能 被引量:1

Catalytic Oxidation of Organic Pollutants by Carbon Fiber Loaded Iron Phthalocyanine
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摘要 利用4-氨基吡啶对碳纤维(CF)进行表面改性,然后通过轴向配位将铁酞菁(FePc)负载到改性碳纤维上,得到碳纤维负载铁酞菁催化材料(CF-py-FePc),并利用电感耦合等离子光谱发生仪测定铁酞菁负载量。分别以酸性红1和甲醛为底物研究其催化和电催化性能,结果表明:CF-py-FePc能有效催化活化双氧水氧化酸性红1,并能高效电催化降解甲醛,且具有良好的循环使用性能。 4-aminopyridine was used for surface modification of carbon fiber(CF).Then,iron phthalocyanine(FePc)was loaded to modified CF through axial coordination to gain iron phthalocyanine catalytic material loaded by CF(CF-py-FePc). Meanwhile,inductively coupled plasma-atomic emission spectrometer was used to determine loading capacity of iron phthalocyanine.Acid red 1and formaldehyde were used as the substrate to study catalysis and electro-catalysis properties.The results show that CF-py-FePc can effectively catalyze and activate hydrogen peroxide and oxidize acid red 1.In addition,it can efficiently conduct catalytic degradation of formaldehyde and has good recycling performance.
出处 《现代纺织技术》 北大核心 2016年第1期32-36,共5页 Advanced Textile Technology
基金 国家自然科学基金重点项目(51133006)
关键词 铁酞菁 轴向配位 催化纤维 碳纤维 甲醛 iron phthalocyanine axial coordination catalytic fiber carbon fiber formaldehyde
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参考文献10

  • 1MCKEOWN N tk Phthalocyanine Materials: Synthesis, Structure and Function [M]. Cambridge: Cambridge University Press, 1998.
  • 2HADASCH A, SOROKIN A, RABION A, et al. Sequential addition of H202, pH and solvent effects as key factors in the oxidation of 2, 4, 6-trichlorophenol catalyzed by iron tetrasulfophthalocyanine [J].New Journal of Chemistry, 1998,22(1): 45- 51.
  • 3SOROKIN A, SERIS J, MEUNIER B. Efficient oxidative dechlorination and aromatic ring cleavage of chlorinated phenols catalyzed by Iron sulfophthalocynine [J]. Science, 1995,268 : 1163-1166.
  • 4XIA T, MAW H, ZHANG T Y, et al. A novel approach for the oxidative degradation of organic pollutants in aqueoussolutions mediated by iron tetrasulfophthalocyanine under visible light radiation [J]. Chemistry-a European Journal, 2002,8(6):1321- 1326.
  • 5CHEN X, ZOU J, LIU L, et al. Preparation of magnetic silica nanoparticle-supp0rted iron tetra- carboxyl phthalocyanine catalyst and its phot0catalytic properties[J].Applied Spectroscopy, 2010, 64(5) : 552-557.
  • 6VALENTE A, PALMA C, FONSECAI M, et al. Oxidation of pinane over phthalocyanine complexes supported on activated carbon: effect of the support surface treatmen[J]. Carbon,2003,41(14):2793-2803.
  • 7AMIN E, NASSER S, MOHAMMAD H P. Aerobic oxidation of cyclohexane with y-alumina supported metallophthalocyanines in the gas phase [J].Applied Catalysis A-General, 2007,321 (2) : 135- 439.
  • 8CAO R, RANJIT T, HYEJUNG K Promotion of oxygen reduction by a bio-inspired tethered iron phthalocyanine carbon nanotube-basecl catalyst [J]. Nature Communications, 2013, 4 (6) : 2075- 2076.
  • 9程丽华,黄君礼,倪福祥.Fenton试剂生成·OH的动力学研究[J].环境污染治理技术与设备,2003,4(5):12-14. 被引量:94
  • 10Somjate Photong,Virote Boonamnuayvitaya.Enhancement of formaldehyde degradation by amine functionalized silica/titania films[J].Journal of Environmental Sciences,2009,21(12):1741-1746. 被引量:5

二级参考文献23

  • 1金鸣,蔡亚欣,李金荣,赵辉.邻二氮菲-Fe^(2+)氧化法检测H_2O_2/Fe^(2+)产生的羟自由基[J].生物化学与生物物理进展,1996,23(6):553-555. 被引量:568
  • 2黄君礼 张乃东.Fe(phen)3^2+光度法研究和测定UV/Fe(C2O4)3^2-,H2O2体系产生的羟自由基[J].环境科学进展,1999,7:152-156.
  • 3Daniel L M, Frost R L, Zhu H Y, 2007. Synthesis and characterization of clay-supported titania photocatalysts. Journal of Colloid and Interface Science, 316: 72-79.
  • 4Huang B, Saka S, 2003. Photocatalytic activity of TiO2 crystallite-activated carbon composites prepared in supercritical isopropanol for the decomposition of formaldehyde. Journal of Wood Science, 49: 79-85.
  • 5Jin M, Nagaoka Y, Nishi K, Ogawa K, Nagahata S, Horikawa T et al., 2008. Adsorption properties and photocatalytic activity of TiO2 and La-doped TiO2. Adsorption, 14: 257-263.
  • 6Mahalakshmi M, Priya S V, Arabindoo B, Palanichamy M, Murugesam V, 2009. Photocatalytic degradation of aqueous propoxur solution using TiO2 and HI5 zeolite-supported TiO2. Journal of Hazardous materials, 161: 336-343.
  • 7Noguchi T, Fujishima A, Sawunyama P, Hashimoto K, 1998. Photocatalytic degradation of gaseous formaldehyde using TiO2 film. Environmental Science and Technology, 32: 3831-3833.
  • 8Okte A N, Sayinsoz E, 2008. Characterization and photocatalytic activity of TiO2 supported sepiolite catalysts. Separation and Purification Technology, 62: 537-545.
  • 9Panpa W, Sujaridworakun P, Jinawath S, 2008. Photoeatalytic activity of TiO2/ZSM-5 composites in the presence of SO4^2- ion. Applied Catalysis B: Environmental, 80: 271- 276.
  • 10Sae-ung S, Boonamnuayvitaya V, 2008, Adsorption of formaldehyde vapor by amine-functionalized mesoporous silica materials. Journal of Environmental Sciences, 20(3): 379- 384.

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