[1] |
杨世迎, 杨鑫, 梁婷, 等. 零价铁还原和过硫酸盐氧化联合降解水中硝基苯[J]. 环境化学, 2012, 31(5): 682-686
|
[2] |
Ambient Water Qualify Criteria[S]. U.S. Environmental protection Agency (USEPA), Washington, DC, 1980
|
[3] |
Li Y P, Cao H B, Liu C M, et al. Electrochemical reduction of nitrobenzene at carbon nanotube electrode[J]. Journal of Hazardous Materials, 2007, 148(1/2): 158-163
|
[4] |
Nefso E K, Burns S E, McGrathb C J. Degradation kinetics of TNT in the presence of six mineral surfaces and ferrous iron[J]. Journal of Hazardous Materials, 2005, 123(1/3): 79-88
|
[5] |
Cao J S, Zhang W X, Brown D G, et al. Oxidation of lindane with Fe(Ⅱ)-activated sodium persulfate[J]. Environmental Science and Technology, 2008, 25(2): 221-228
|
[6] |
Yang S Y, Wang P, Yang X, et al. Degradation efficiencies of azo dye Acid Orange 7 by the interaction of heat, UV and anions with common oxidants: persulfate, peroxymonosulfate and hydrogen peroxide[J]. Journal of Hazardous Materials, 2010, 179(1/3): 552-558
|
[7] |
Liang C, Huang C F, Mohanty N, et al. A rapid spectrophotometric determination of persulfate anion in ISCO[J]. Chemosphere, 2008, 73(9): 1540-1543
|
[8] |
Lee Y, Lo S L, Chiueh P T, et al. Microwave-hydrothermal decomposition of perfluorooctanoic acid in water by iron-activated persulfate oxidation[J]. Water Research, 2010, 44(3): 886-892
|
[9] |
Michelle M S, Kathleen M J, John C W, et al. Mass transport effects on the kinetics of nitrobenzene reduction by iron metal[J]. Environmental Science and Technology, 2001, 35 (13): 2804-2811
|
[10] |
Liang C, Bruell C, Marley M, et al. Persulfate oxidation for in situ remediation of TCE.Ⅱ. Activated by chelated ferrousion[J]. Chemosphere, 2004, 55(9): 1225-1233
|
[11] |
Przemysaw D, Leonidas P. Impact of peroxydisulfate in the presence of zero valent iron on the oxidation of cyclohexanoic acid and naphthenic acids from oil sands process-affected water[J]. Environmental Science and Technology, 2012, 46(6): 8984-8991
|
[12] |
Liang C, Bruell C, Marley M, et al. Persulfate oxidation for in situ remediation of TCE. I. Activated by ferrous ion with and without a persulfate-thiosulfate redox couple[J]. Chemosphere, 2004, 55(9): 1213-1223
|
[13] |
Furukawa Y, Kim J, Watkins J, et al. Fromation of ferrihydrite and associated iron corrosion products in permeable reactive barriers of zero-valent iron[J]. Environmental Science and Technology, 2002, 36(24): 5469-5475
|
[14] |
Guan Y, Ma J. Influence of pH on the formation of sulfate and hydroxyl radicals in the UV/peroxymonosulfate system[J]. Environmental Science and Technology, 2011, 45(10): 9308-9314
|
[15] |
Zhang Y Q, Huang W L. In situ chemical oxidation of aniline by persulfate with iron(Ⅱ) activation at ambient temperature[J]. Chinese Chemical Letters, 2010, 21(9): 911-913
|
[16] |
Moon B, Park Y, Park K. Fenton oxidation of Orange Ⅱ by pre-reduction using nanoscale zero-valent iron[J]. Desalination, 2011, 268(9): 249-252
|
[17] |
吕国晓, 尹军, 刘蕾, 等. pH值对零价铁还原降解模拟地下水中硝基苯的影响[J]. 环境化学, 2009, 28(3): 355-359
|
[18] |
Liang C, Lai M C. Trichloroethylene degradation by zero valent iron activated persulfate oxidation[J]. Environmental Engineering Science, 2008, 25(7): 1071-1077
|