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第 5 期               王佳豪,等:  光化学 AOPs 去除水中抗生素抗性菌和抗性基因研究进展                                 ·897·


                 Catalysis B: Environmental, 2019, 259: 118065.     UV/chlorine process[J]. Water Research, 2017, 126: 351-360.
            [43]  YU P, ZHOU X  Q, LI Z F,  et al. Inactivation and change of   [56]  GUO Z Y (郭忠禹), CHEN J W (陈景文), ZHANG S Y (张思玉),
                 tetracycline-resistant  Escherichia coli in secondary effluent by   et al. Effects of dissolved  organic  matter on photochemical
                 visible light-driven photocatalytic process using Ag/AgBr/g-C 3N 4[J].   transformation  of organic micropollutants in  natural waters[J].
                 Science of the Total Environment, 2020, 705: 135639.     Chinese Science Bulletin (科学通报), 2020, 65(26): 2786-2803.
            [44]  YUAN Q B, ZHANG D N, YU P F, et al. Selective adsorption and   [57]  ZHANG  X, LI  J, FAN W  Y,  et al.  Enhanced photodegradation of
                 photocatalytic degradation of extracellular antibiotic resistance genes   extracellular antibiotic resistance genes by dissolved organic matter
                 by molecularly-imprinted graphitic carbon nitride[J]. Environmental   photosensitization[J]. Environmental Science &  Technology, 2019,
                 Science & Technology, 2020, 54(7): 4621-4630.     53(18): 10732-10740.
            [45]  KARAOLIA P, MICHAEL-KORDATOU I, HAPESHI  E,  et al.   [58]  ZHANG  Y N, ZHANG T T, LIU H  Y,  et al. Simulated
                 Removal of antibiotics, antibiotic-resistant bacteria  and their   sunlight-induced inactivation of tetracycline resistant bacteria and
                 associated genes by graphene-based TiO 2 composite photocatalysts   effects of  dissolved organic matter[J].  Water Research, 2020, 185:
                 under solar radiation in urban wastewaters[J]. Applied Catalysis B:   116241.
                 Environmental, 2018, 224: 810-824.            [59]  NIHEMAITI M, YOON Y, HE H, et al. Degradation and deactivation
            [46]  VENIERI D, GOUNAKI I, BIKOUVARAKI M,  et al. Solar   of a plasmid-encoded extracellular antibiotic resistance gene during
                 photocatalysis as disinfection technique: Inactivation of  Klebsiella   separate  and combined exposures to UV254 and radicals[J].  Water
                 pneumoniae in sewage and investigation of changes  in antibiotic   Research, 2020, 182: 115921.
                 resistance profile[J]. Journal of Environmental Management, 2017,   [60]  MALATO S, FERNÁNDEZ-IBÁÑEZ P, MALDONADO M I, et al.
                 195: 140-147.                                     Decontamination and disinfection of  water by solar photocatalysis:
            [47]  DING N, CHANG X M, SHI N,  et al. Enhanced inactivation of   Recent overview and trends[J]. Catalysis Today, 2009, 147(1): 1-59.
                 antibiotic-resistant bacteria isolated from secondary effluents by   [61]  MOREIRA N F F, SOUSA J M, MACEDO G, et al. Photocatalytic
                 g-C 3N 4  photocatalysis[J]. Environmental Science and Pollution   ozonation of urban wastewater and surface water using immobilized
                 Research, 2019, 26(18): 18730-18738.              TiO 2 with LEDs: Micropollutants, antibiotic resistance genes and
            [48]  GIANNAKIS S, LE T M, ENTENZA J M, et al. Solar photo-Fenton   estrogenic activity[J]. Water Research, 2016, 94: 10-22.
                 disinfection of 11 antibiotic-resistant bacteria (ARB) and elimination   [62]  MOREIRA N F F, NARCISO-DA-ROCHA C, POLO-LÓPEZ M I,
                 of representative AR genes. Evidence that antibiotic resistance does   et al. Solar treatment (H 2O 2, TiO 2-P25 and GO-TiO 2 photocatalysis,
                 not imply resistance to oxidative treatment[J]. Water Research, 2018,   photo-Fenton) of organic micropollutants, human pathogen indicators,
                 143: 334-345.                                     antibiotic resistant bacteria and related genes in urban wastewater[J].
            [49]  AHMED Y, LU J, YUAN  Z  G,  et al. Efficient inactivation of   Water Research, 2018, 135: 195-206.
                 antibiotic resistant bacteria and antibiotic resistance genes by   [63]  LI S M (李树铭),  WANG J (王锦),  WANG H C (王海潮),  et al.
                 photo-Fenton  process under visible LED light and neutral pH[J].   Reduction of ARB and ARGs by ultraviolet, ozone and  combined
                 Water Research, 2020, 179: 115878.                disinfection technology[J]. China Environmental Science (中国环境
            [50]  JIMÉNEZ-TOTOTZINTLE M, FERREIRA I J, DA SILVA DUQUE   科学), 2019, 39(12): 5145-5153.
                 S, et al. Removal of contaminants of emerging concern (CECs) and   [64]  GIANNAKIS S,  VOUMARD M, GRANDJEAN  D,  et al.
                 antibiotic resistant  bacteria in urban  wastewater using  UVA/TiO 2/   Micropollutant degradation, bacterial inactivation and regrowth risk
                 H 2O 2 photocatalysis[J]. Chemosphere (Oxford), 2018, 210: 449-457.     in wastewater effluents: Influence of the secondary (pre)treatment on
            [51]  FERRO G, GUARINO  F, CASTIGLIONE  S,  et al.  Antibiotic   the efficiency of advanced oxidation  processes[J]. Water Research,
                 resistance spread potential in urban wastewater effluents disinfected   2016, 102: 505-515.
                 by UV/H 2O 2 process[J]. Science of the Total Environment, 2016,   [65]  MANAIA C M,  MACEDO G, FATTA-KASSINOS D,  et al.
                 560/561: 29-35.                                   Antibiotic resistance in urban aquatic environments: Can it be
            [52]  CHANG P  H, JUHREND B,  OLSON  T M,  et al.  Degradation of   controlled?[J]. Appl Microbiol Biotechnol, 2016, 100(4): 1543-1557.
                 extracellular antibiotic resistance genes with UV254 treatment[J].   [66]  BIANCULLO F,  MOREIRA  N F F, RIBEIRO A  R,  et al.
                 Environmental Science & Technology, 2017, 51(11): 6185-6192.     Heterogeneous photocatalysis using UVA-LEDs for the removal of
            [53]  XIAO Y, CHU X N, HE M, et al. Impact of UVA pre-radiation on   antibiotics and antibiotic resistant bacteria from urban wastewater
                 UVC disinfection performance: Inactivation, repair and mechanism   treatment plant effluents[J]. Chemical Engineering Journal, 2019,
                 study[J]. Water Research, 2018, 141: 279-288.     367: 304-313.
            [54]  MIKLOS D B, REMY C, JEKEL M, et al. Evaluation of advanced   [67]  YIN H L, LI G Y, CHEN  X F,  et al.  Accelerated evolution of
                 oxidation processes for water and wastewater treatment-A critical   bacterial antibiotic resistance through early emerged stress responses
                 review[J]. Water Research, 2018, 139: 118-131.     driven by photocatalytic oxidation[J]. Applied Catalysis B:
            [55]  WU Z H, GUO K H, FANG J Y, et al. Factors affecting the roles of   Environmental, 2020, 269: 118829.
                 reactive species in the  degradation of micropollutants by the
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