[1] 薛秀玲,樊国封,刘如东. 负载型TiO2-xNx的制备表征及可见光催化降解亚甲基蓝[J].环境化学,2011,30(6):1152-1156
[2] Vandevivere P C, Bianchi R, Verstraete W. Treatment and reuse of wastewater from the textile wetprocessing industry [J]. Chem Technol Biotechnol, 1998, 72(4): 289-302
[3] Galindo C, Jacques P, Kalt A. Photochemical and photocatalytic degradation of an indigoid dye: a case study of acid blue 74(AB74) [J]. Photochem Photobiol A: Chem, 2001,141(1): 47-56
[4] Chen W X, Lu W Y, Yao Y Y, et al. Highly efficient decomposition of organic dyes by aqueous-fiber phase transfer and in situ catalytic oxidation using fiber-supported cobalt phthalocyanine [J]. Environ Sci Technol, 2007, 41(17):6240-6245
[5] 高冠道,张爱勇,张萌,等. 新型仿生光催化剂 HMS-FePcS催化降解孔雀石绿的反应因素及动力学[J].催化学报,2008,29(4):34-36
[6] 郭龙发,潘海波,沈水发,等.CuTSPc/SnO2纳米介孔复合材料的合成及可见光光催化活性[J].催化学报,2009,30(1):53-59
[7] Iliev V, Alexjev V, Bilymka L. Effect of metal phthalocyanine complex aggregation on the catalytic and photocatalytic oxidation of sulfur containing compounds[J]. J Mol Catal A: Chem, 1999, 137(1): 15-22
[8]
[9] Iliev V, Ileva A, Bilyarska L. Oxidation and photooxidation of sulfur containing compounds in the presence of immobilized phthalocyanine complexes[J]. J Mol Catal A: Chem, 1997, 126(1): 99-108
[10] 高冠道,陈金龙,费正皓,等. 超高交联树脂催化剂对水溶液中孔雀石绿的催化降解研究[J].高分子学报,2006,2(1):113-117
[11] 吕春燕, 吕彤, 苏秋红,等. 负载型磺酸铁酞菁对染料废水的光催化降解[J].纺织学报,2009,30(5):100-103
[12] 李邦玉,方昕,杨素苓,等. 1,4,8,11,15,18,22,25-八丁氧基酞菁镍(Ⅱ)的合成与性质[J]. 化学研究与应用,2003,15(1):75-77
[13] 陈伟,闫影,周中林,等.介孔分子筛MCM-41负载取代酞菁钴催化氧化乙硫醇[J].石油化工, 2009,38(8):822-826
[14] 石慧, 吴兆亮, 卢珂,等. Ca2+/H2O2降解水中孔雀石绿[J].过程工程学报,2009, 9(1):38-42
[15] 梁强,韩爱霞,张复实. 四磺酸酞菁锰(Ⅱ)的合成及其应用[J]. 应用化学.2004,21(12):1290-1294
[16]
[17] 刘星,宋伟明,邓启刚. 介孔分子筛Al-MCM-41接枝三甲氯化锡的合成、表征及催化性能[J].应用化学,2011,28(6):673-677
[18] 高冠道, 陈金龙, 郑寿荣,等. 新型仿生光催化剂的合成及在孔雀石绿光催化降解中的作用[J]. 催化学报, 2005, 26(7): 545-549