[1] FAN Z, HU J, AN W, et al. Detection and occurrence of chlorinated byproducts of bisphenol a, nonylphenol, and estrogens in drinking water of China:Comparison to the parent compounds[J]. Environmental Science & Technology, 2013, 47(19):10841-10850.
[2] BENOTTI M J, TRENHOLM R A, VANDERFORD B J, et al. Pharmaceuticals and endocrine disrupting compounds in U.S. drinking water[J]. Environmental Science & Technology, 2009, 43(3):597-603.
[3] MIÈGE C, CHOUBERT J M, RIBEIRO L, et al. Fate of pharmaceuticals and personal care products in wastewater treatment plants-Conception of a database and first results[J]. Environmental Pollution, 2009, 157(5):1721-1726.
[4] CLARA M, STRENN B, KREUZINGER N, Carbamazepine as a possible anthropogenic marker in the aquatic environment:Investigations on the behaviour of Carbamazepine in wastewater treatment and during groundwater infiltration[J]. Water Research, 2004, 38(4):947-954.
[5] RADJENOVIĆ J, PETROVIĆ M, BARCELÓ D, Fate and distribution of pharmaceuticals in wastewater and sewage sludge of the conventional activated sludge (CAS) and advanced membrane bioreactor (MBR) treatment[J]. Water Research, 2009, 43(3):831-841.
[6] MATAMOROS V, GARCÍA J, BAYONA J M. Organic micropollutant removal in a full-scale surface flow constructed wetland fed with secondary effluent[J]. Water Research, 2008, 42(3):653-660.
[7] BUXTON G V, GREENSTOCK C L, HELMAN W P, et al. Critical-review of rate constants for reactions of hydrated electrons, hydrogen-atoms and hydroxyl radicals (·OH/·O-) in aqueous-solution[J]. Journal of Physical and Chemical Reference Data, 1988, 17(2):513-886.
[8] WALLING C. Fenton's reagent revisited[J]. Accounts of Chemical Research, 1975, 8(4):125-131.
[9] PIGNATELLO J J, OLIVEROS E, MACKAY A. Advanced oxidation processes for organic contaminant destruction based on the Fenton reaction and related chemistry[J]. Critical Reviews in Environmental Science and Technology, 2006, 36(1):1-84.
[10] RUBIO-CLEMENTE, TORRES-PALMA R A, PEÑUELA G A. Removal of polycyclic aromatic hydrocarbons in aqueous environment by chemical treatments:A review[J]. Science of the Total Environment, 2014, 478:201-225.
[11] DENG Y, ENGLEHARDT J D. Treatment of landfill leachate by the Fenton process[J]. Water Research, 2006, 40(20):3683-3694.
[12] LI W, NANABOINA V, ZHOU Q, et al. Effects of Fenton treatment on the properties of effluent organic matter and their relationships with the degradation of pharmaceuticals and personal care products[J]. Water Research, 2012, 46(2):403-412.
[13] DAO Y H, DE LAAT J. Hydroxyl radical involvement in the decomposition of hydrogen peroxide by ferrous and ferric-nitrilotriacetate complexes at neutral pH[J]. Water Research, 2011, 45(11):3309-3317.
[14] SUN S P, ZENG X, LEMLEY A T. Kinetics and mechanism of carbamazepine degradation by a modified Fenton-like reaction with ferric-nitrilotriacetate complexes[J]. Journal of Hazardous Materials, 2013, 252-253:155-165.
[15] HUANG W, BRIGANTE M, WU F, et al. Assessment of the Fe(Ⅲ)-EDDS complex in Fenton-like processes:From the radical formation to the degradation of bisphenol A[J]. Environmental Science & Technology, 2013, 47(4):1952-1959.
[16] WATTS R J, BOTTENBERG B C, HESS T F, et al. Role of reductants in the enhanced desorption and transformation of chloroaliphatic compounds by modified Fenton's reactions[J]. Environmental Science & Technology, 1999, 33(19):3432-3437.