[1] |
Behra R, Krug H. Nanoparticles at large[J]. Nature Nanoecotoxicol, 2008, 3: 253-254
|
[2] |
Long R Q, Yang R T. Carbon nanotubes as superior sorbent for dioxin removal[J]. J Am Chem Soc, 2001, 123: 2058-2059
|
[3] |
Li Y H, Wang S G, Luan Z K, et al. Adsorption of cadmium (Ⅱ) from aqeous solution by surface oxidized carbon nanotubes[J]. Carbon, 2003,41: 1057-1062
|
[4] |
耿成怀,成荣明,徐学诚,等. 碳纳米管对苯胺的吸附行为[J],应用化学,2004, 7(21):737-739
|
[5] |
Yang K, Zhu L H, Xing B S. Adsorption of polycyclic aromatic hydrocarbons by carbon nanomaterials[J], Environ Sci Technol, 2006,40: 1855-1861
|
[6] |
Wang X L, Lu J L, Xu M G, et al. Sorption of pyrene by regular and nanoscaled metal oxide particles: Influence of adsorbed organic matter[J]. Environ Sci Technol, 2008,42: 7267-7272
|
[7] |
Yang S T, Wang X, Jia G, et al. Long-term accumulation and low toxicity of single-walled carbon nanotubes in intravenously exposed in mice[J]. Toxicol Lett, 2008,181: 182-189
|
[8] |
Krång A S. Naphthalene disrupts pheromone induced mate search in the amphipod Corophium volutator (Pallas) [J]. Aquat Toxicol, 2007, 85: 9-18
|
[9] |
Sun Y Y, Yu H X, Wang X R, et al. Bioaccumulation, depuration and oxidative stress in fish Carassius auratus under phenanthrene exposure[J].Chemosphere,2006, 63: 1319-1327
|
[10] |
Yin Y, Wang X R, Sun Y Y, et al. Bioaccumulation and oxidative stress in submerged macrophyte Ceratophyllum demersum L. upon exposure to pyrene[J]. Environ Toxicol, 2008, 23: 328-336
|
[11] |
Girard P M, Boiteux S. Repair of oxidized DNA bases in the yeast Saccharomyces cerevisiae[J]. Biochimie, 1997, 79: 559-566
|
[12] |
Davies M J, Havkins C L. EPR Spin trapping of protein radicals[J]. Free Radical Biology & Medicine, 2004, 36 (9): 1072-1086
|
[13] |
Luo Y, Shi H H, Wang X R, et al. Free radical generation and lipid peroxidation induced by 2,4-dichlorophenol in liver of Carassius auratus[J]. Environmental Science, 2005, 26 (3):29-32
|
[14] |
Marklund S, Marklund G. Involvement of the superdxide anion raical in the auto oxidation of pyrogallol and a convenient assay for superoxide dismutase[J]. Eur J Biochem, 1976, 47:469-474
|
[15] |
Oberdörster G, Sharp Z, Atudorei V, et al. Translocation of inhaled ultrafine particles to the brain[J]. Inhalation Toxicology, 2004, 16(6/7):437-446
|
[16] |
刘慧, 王晓蓉. 锌及其配合物对鲫鱼肝脏谷胱甘肽抗氧化系统的影响[J].中国环境科学,2005, 2:35-40
|
[17] |
Villem A, Henri-Charles D, Kaja K, et al. Toxicity of nanoparticles of CuO, ZnO and TiO2 to microalgae Pseudokirchneriella subcapitata[J]. Science of The Total Environment, 2009, 407(4):1461-146
|
[18] |
Zhiru M, Zhao B L, Yuan Z B. Application of electrochemical and spin trapping techniques in the investigation of hydroxyl radicals [J]. Ana Chim Acta, 1999, 389: 213-218
|
[19] |
Harder B.Conduit to the brain:Particles enter the nervous system via the nose[J]. Science News, 2004,165(4):54
|
[20] |
Yin Y, Jia H X, Sun Y Y. et al. Bioaccumulation and ROS generation in liver of Carassius auratus, exposed to phenanthrene[J]. Comparative Biochemistry and physiology, part C, 2007, 145(2): 288-293
|
[21] |
Livingstone DR. Contaminant-stimulated reactive oxygen species production and oxidative damage in aquatic organisms[J]. Mar Pollut Bull, 2001, 42: 656-666
|
[22] |
Mittler R. Oxidative stress, antioxidants and stress tolerance[J]. Trends Plant Sci, 2002, 7: 405-410
|