参考文献/References:
[1]XU H D,WANG L H,LI X C,et al. Thiourea dioxide coupled with trace Cu(II):an effective process for the reductive degradation of diatrizoate[J]. Environmental science & technology,2021,55(17):12009-12018.
[2]LI J,JIANG J,PANG S Y,et al. Transformation of X-ray contrast media by conventional and advanced oxidation processes during water treatment:efficiency,oxidation intermediates,and formation of iodinated byproducts[J]. Water research,2020,185:116234.
[3]NOWAK A,PACEK G,MROZIK A. Transformation and ecotoxicological effects of iodinated X-ray contrast media[J]. Reviews in environmental science and bio/technology,2020,19(2):337-354.
[4]陈皇博,程心滢,叶晓枫,等. 碘代X射线造影剂的分析方法及其污染现状研究进展[J]. 环境化学,2019,38(8):1919-1929.
[5]KOVALOVA L,SIEGRIST H,von GUNTEN U,et al. Elimination of micropollutants during post-treatment of hospital wastewater with powdered activated carbon,ozone,and UV[J]. Environmental science & technology,2013,47(14):7899-7908.
[6]SEITZ W,JIANG J Q,WEBER W H,et al. Removal of iodinated X-ray contrast media during drinking water treatment[J]. Environmental chemistry,2006,3(1):35-39.
[7]GE X Y,WU Z L,MANZOLI M,et al. Adsorptive recovery of iopamidol from aqueous solution and parallel reuse of activated carbon:batch and flow study[J]. Industrial & engineering chemistry research,2019,58(17):7284-7295.
[8]LLADÓ J,LAO-LUQUE C,SOLÉ-SARDANS M,et al. Elimination of persistent anthropogenic pollutants by micro-mesoporous carbon xerogels. Natural organic matter on surface water and textural properties influences[J]. Journal of environmental chemical engineering,2021,9(1):104885.
[9]AHN Y T,CHO D W,KABRA A N,et al. Removal of iopromide and its intermediates from ozone-treated water ssing granular activated carbon[J]. Water,air,& soil pollution,2015,226(10):346-355.
[10]RUSTIGHI I,DONATI I,FERLUGA M,et al. Borate complexes of X-ray iodinated contrast agents:characterization and sorption studies for their removal from aqueous media[J]. Journal of hazardous materials,2012,205:10-16.
[11]BILAL M,LAM S S,IQBAL H M N. Biocatalytic remediation of pharmaceutically active micropollutants for environmental sustainability[J]. Environmental pollution,2022,293:118582.
[12]LIU Y A,HU J L,XU B J,et al. Isolation and identification of an iopromide-degrading strain and its application in an A2/O system[J]. Bioresource technology,2013,134:36-42.
[13]XU B,GAO P,LIU Z,et al. Influence of cosubstrates on iopromide degradation by pseudomonas sp. I-24[J]. Water,air, & soil pollution,2014,225(2):1849-1857.
[14]HACK N,REINWAND C,ABBT-BRAUN G,et al. Biodegradation of phenol,salicylic acid,benzenesulfonic acid,and iomeprol by pseudomonas fluorescens in the capillary fringe[J]. Joural of contaminant hydrology,2015,183:40-54.
[15]RODRIGUEZ-COUTO S. Industrial and environmental applications of white-rot fungi[J]. Mycosphere,2017,8(3):456-466.
[16]GROS M,CRUZ-MORATO C,MARCO-URREA E,et al. Biodegradation of the X-ray contrast agent iopromide and the fluoroquinolone antibiotic ofloxacin by the white rot fungus Trametes versicolor in hospital wastewaters and identification of degradation products[J]. Water research,2014,60:228-241.
[17]WANG X,WANG Z,TANG Y,et al. Oxidative degradation of iodinated X-ray contrast media(iomeprol and iohexol)with sulfate radical:An experimental and theoretical study[J]. Chemical engineering journal,2019,368:999-1012.
[18]KORMOS J L,SCHULZ M,TERNES T A. Occurrence of iodinated X-ray contrast media and their biotransformation products in the urban water cycle[J]. Environmental science & technology,2011,45(20):8723-8732.
[19]YE T,ZHANG T Y,TIAN F X,et al. The fate and transformation of iodine species in UV irradiation and UV-based advanced oxidation processes[J]. Water research,2021,206:117755.
[20]RADJENOVIC J,PETROVIC M. Sulfate-mediated electrooxidation of X-ray contrast media on boron-doped diamond anode[J]. Water research,2016,94:128-135.
[21]TURKAY O,BARISCI S,ULUSOY E,et al. Electrochemical reduction of X-ray contrast iohexol at mixed metal oxide electrodes:process optimization and by-product identification[J]. Water,air,& soil pollution,2018,229(6):170-181.
[22]DEL MORO G,PASTORE C,DI IACONI C,et al. Iodinated contrast media electro-degradation:process performance and degradation pathways[J]. Science of the total environment,2015,506-507:631-643.
[23]de SALLES PUPO M M,ALBAHACA OLIVA J M,BARRIOS EGUILUZ K I,et al. Characterization and comparison of Ti/TiO2-NT/SnO2-SbBi,Ti/SnO2-SbBi and BDD anode for the removal of persistent iodinated contrast media(ICM)[J]. Chemosphere,2020,253:126701.
[24]RADJENOVIC J,FLEXER V,DONOSE B C,et al. Removal of the X-ray contrast media diatrizoate by electrochemical reduction and oxidation[J]. Environmental science & technology,2013,47(23):13686-13694.
[25]ZHANG W,SOUTREL I,AMRANE A,et al. Electrochemical processes coupled to a biological treatment for the removal of iodinated X-ray contrast media compounds[J]. Frontiers in chemistry,2020,8:646-656.
[26]BOCOS E,OTURAN N,SANROMÁN M Á,et al. Elimination of radiocontrast agent diatrizoic acid from water by electrochemical advanced oxidation:kinetics study,mechanism and mineralization pathway[J]. Journal of electroanalytical chemistry,2016,772:1-8.
[27]MORATALLA Á,COTILLAS S,LACASA E,et al. Electrochemical technologies to decrease the chemical risk of hospital wastewater and urine[J]. Molecules,2021,26:6813-6839.
[28]SCHNEIDER A L,TISLER S,SCHELL H,et al. Electrochemical oxidation of iodinated X-ray contrast media by boron-doped diamond electrodes[J]. Desalination and water treatment,2017,91:268-272.
[29]ISSAKA E,AMV-DARKO J N O,YAKUBU S,et al. Advanced catalytic ozonation for degradation of pharmaceutical pollutants—A review[J]. Chemosphere,2021:133208.
[30]TERNES T A,STUBER J,HERRMANN N,et al. Ozonation:a tool for removal of pharmaceuticals,contrast media and musk fragrances from wastewater[J]. Water research,2003,37(8):1976-1982.
[31]YE T,ZHANG T Y,TIAN F X,et al. The fate and transformation of iodine species in UV irradiation and UV-based advanced oxidation processes[J]. Water research,2021,206:117755.
[32]PENG J,HE Y,ZHOU C,et al. The carbon nanotubes-based materials and their applications for organic pollutant removal:a critical review[J]. Chinese chemical letter,2021,32(5):1626-1636.
[33]RIVAS F J,SOLIS R R,BELTRAN F J,et al. Sunlight driven photolytic ozonation as an advanced oxidation process in the oxidation of bezafibrate,cotinine and iopamidol[J]. Water research,2019,151:226-242.
[34]AZERRAD S P,EVERSLOH C L,GILBOA M,et al. Identification of transformation products during advanced oxidation of diatrizoate:effect of water matrix and oxidation process[J]. Water research,2016,103:424-434.
[35]PAGANINI M C,DALMASSO D,GIONCO C,et al. Beyond TiO2:Cerium-doped zinc oxide as a new photocatalyst for the photodegradation of persistent pollutants[J]. Chemistryselect,2016,1(12):3377-3383.
[36]HE H,WANG W,XU C,et al. Highly efficient degradation of iohexol on a heterostructured graphene-analogue boron nitride coupled Bi2MoO6 photocatalyst under simulated sunlight[J]. Science of the total environment,2020,730:139100.
[37]JI Q,CHENG X,SUN D,et al. Persulfate enhanced visible light photocatalytic degradation of iohexol by surface-loaded perylene diimide/acidified biochar[J]. Chemical engineering journal,2021,414:128793.
[38]DONG Z Y,XU B,HU C Y,et al. The application of UV-C laser in persulfate activation for micropollutant removal:case study with iodinated X-ray contrast medias[J]. Science of the total environment,2021,779:146340.
[39]ZHOU L,FERRONATO C,CHOVELON J M,et al. Investigations of diatrizoate degradation by photo-activated persulfate[J]. Chemical engineering journal,2017,311:28-36.
[40]YE T,ZHANG T Y,TIAN F X,et al. The fate and transformation of iodine species in UV irradiation and UV-based advanced oxidation processes[J]. Water research,2021,206:117755.
[41]WANG X,WANG Z,TANG Y,et al. Oxidative degradation of iodinated X-ray contrast media(iomeprol and iohexol)with sulfate radical:An experimental and theoretical study[J]. Chemical engineering journal,2019,368:999-1012.
[42]DONG Z J,CHEN G H,LI M,et al. Fe(II)-activated persulfate oxidation to degrade iopamidol in water:parameters optimization and degradation paths[J]. Scientific reports,2020,10:21548.
[43]SHANG W T,DONG Z J,LI M,et al. Degradation of diatrizoate in water by Fe(II)-activated persulfate oxidation[J]. Chemical engineering journal,2019,361:1333-1344.
[44]ZHU J P,LIN Y L,ZHANG T Y,et al. Modelling of iohexol degradation in a Fe(II)-activated persulfate system[J]. Chemical engineering journal,2019,367:86-93.
[45]李冕,朱静萍,张天阳,等. 水中常见离子对Fe(Ⅱ)/PS降解碘海醇及碘代消毒副产物生成影响研究[J]. 给水排水,2021,57(5):7-15.
[46]SENGAR A,VIJAYANANDAN A. Comprehensive review on iodinated X-ray contrast media:complete fate,occurrence,and formation of disinfection byproducts[J]. Science of the total environment,2021,769:144846.
[47]LV X D,YANG S Q,XUE W J,et al. Performance of Cu-cathode/Fe3+/peroxymonosulfate process on iohexol degradation[J]. Journal of hazardous materials,2019,366:250-258.