| [1]王锐佳,雍占福,杨永宝.轮胎磨损与轮胎动力学性能变化的研究进展[J].橡胶工业,2021,68(02):140-145.
[2]王浩,李梁,高杨.不同老化条件对防老剂6PPD及其应用性能的影响[J].轮胎工业,2022,42(08):502-506.
[3]ZhangM,YinH,TanJ,etal.Acomprehensivereviewoftyrewearparticles:Formation,measurements,properties,andinfluencingfactors[J].AtmosphericEnvironment,2023,297:119597.
[4]国钦瑞,邵华锋.橡胶的老化机理及老化行为的研究进展[J].高分子通报,2022(02):17-24.
[5]王思静,熊金平,左禹.橡胶老化特征及防护技术研究进展[J].合成材料老化与应用,2009,38(03):41-46.
[6]TianZ,ZhaoH,PeterKT,etal.Aubiquitoustirerubber-derivedchemicalinducesacutemortalityincohosalmon[J].Science,2021,371(6525):185-189.
[7]TimilsinaA,AdhikarK,YadavAK,etal.Effectsofmicroplasticsandnanoplasticsinshrimp:Mechanismsofplasticparticleandcontaminantdistributionandsubsequenteffectsafteruptake[J].ScienceoftheTotalEnvironment,2023:164999.
[8]CaoG,WangW,ZhangJ,etal.NewEvidenceofRubber-DerivedQuinonesinWater,Air,andSoil[J].EnvironSciTechnol,2022,56(7):4142-4150.
[9]IheanachoSC,AdeoluAI,NwoseR,etal.Genotoxicity,oxidativestressandlysozymeinductioninClariasgariepinuschronicallyexposedtowater-solublefractionofburnttireash[J].Ecotoxicology,2021,30(10):1983-1996.
[10]EngelsHW,WeidenhauptHJ,PierothM,etal.Rubber,9.Chemicalsandadditives[J].Ullmann′sEncyclopediaofindustrialchemistry,2000.
[11]李嘉瑶,申慧敏,徐婷婷,等.橡胶防老化剂6PPD及其臭氧化产物6PPD-Q的环境分布和生物毒性[J].中国环境科学,2023,43(03):1407-1421.
[12]刘春芳.对苯二胺类防老剂在橡胶热氧老化过程中的消耗及反应机理[J].世界橡胶工业,2014,41(04):39-44.
[13]LaattimerR,HooserE,LayerR,etal.MechanismsofozonationofN-(1,3-dimethylbutyl)-N′-phenyl-p-phenylenediamine[J].RubberChemistryandTechnology,1983,56(2):431-439.
[14]HuX,ZhaoHN,TianZ,etal.Chemicalcharacteristics,leaching,andstabilityoftheubiquitoustirerubber-derivedtoxicant6PPD-quinone[J].EnvironmentalScience:Processes&Impacts,2023,25(5):901-911.
[15]HikiK,AsahinaK,KatoK,etal.Acutetoxicityofatirerubber-derivedchemical,6PPDquinone,tofreshwaterfishandcrustaceanspecies[J].EnvironmentalScience&TechnologyLetters,2021,8(9):779-784.
[16]SeiwertB,NihemaitiM,TroussierM,etal.Abioticoxidativetransformationof6-PPDand6-PPDquinonefromtiresandoccurrenceoftheirproductsinsnowfromurbanroadsandinmunicipalwastewater[J].WaterResearch,2022,212:118122.
[17]DiS,LiuZ,ZhaoH,etal.Chiralperspectiveevaluations:Enantioselectivehydrolysisof6PPDand6PPD-quinoneinwaterandenantioselectivetoxicitytoGobiocyprisrarusandOncorhynchusmykiss[J].Environmentinternational,2022,166:107374.
[18]RossommeE,Hart-CooperWM,OrtsWJ,etal.Computationalstudiesofrubberozonationexplaintheeffectivenessof6PPDasanantidegradantandthemechanismofitsquinoneformation[J].Environmentalscience&technology,2023,57(13):5216-5230.
[19]焦萌,曹秉帝,张涛.环境中的轮胎磨损颗粒:从路面到海洋[J].环境科学学报,2020,40(12):4263-4278.
[20]ScholzNL,MyersMS,MccarthySG,etal.Recurrentdie-offsofadultcohosalmonreturningtospawninPugetSoundlowlandurbanstreams[J].PloSone,2011,6(12):e28013.
[21]DingJ,LVM,ZhuD,etal.Tirewearparticles:Anemergingthreattosoilhealth[J].CriticalReviewsinEnvironmentalScienceandTechnology,2023,53(2):239-257.
[22]ZhangY,XuC,ZhangW,etal.P-phenylenediamineantioxidantsinPM2.5:theunderestimatedurbanairpollutants[J].EnvironmentalScience&Technology,2021,56(11):6914-6921.
[23]HuangW,ShiY,HuangJ,etal.Occurrenceofsubstitutedp-phenylenediamineantioxidantsindusts[J].EnvironmentalScience&TechnologyLetters,2021,8(5):381-385.
[24]JohannessenC,HelmP,LashukB,etal.Thetirewearcompounds6PPD-quinoneand1,3-diphenylguanidineinanurbanwatershed[J].Archivesofenvironmentalcontaminationandtoxicology,2022:1-9.
[25]MonaghanJ,JaegerA,AguaAR,etal.Adirectmassspectrometrymethodfortherapidanalysisofubiquitoustire-derivedtoxinN-(1,3-Dimethylbutyl)-N′-phenyl-p-phenylenediaminequinone(6-PPDQ)[J].EnvironmentalScience&TechnologyLetters,2021,8(12):1051-1056.
[26]BoharaK,TimilsinaA,AdhikariK,etal.Aminireviewon6PPDquinone:Anewthreattoaquacultureandfisheries[J].EnvironmentalPollution,2023:122828.
[27]LiC,ZhangY,YinS,etal.Firstinsightsinto6PPD-quinoneformationfrom6PPDphotodegradationinwaterenvironment[J].Journalofhazardousmaterials,2023,459:132127.
[28]WangW,CaoG,ZhangJ,etal.UV-inducedphotodegradationofemergingpara-phenylenediaminequinonesinaqueousenvironment:Kinetics,productsidentificationandtoxicityassessments[J].Journalofhazardousmaterials,2024,465:133427.
[29]XuQ,LiG,FangL,etal.Enhancedformationof6PPD-Qduringtheagingoftirewearparticlesinanaerobicfloodedsoils:Theroleofironreductionandenvironmentallypersistentfreeradicals[J].EnvironmentalScience&Technology,2023,57(14):5978-5987.
[30]BrinkmannM,MontgomeryD,SelingerS,etal.Acutetoxicityofthetirerubber-derivedchemical6PPD-quinonetofourfishesofcommercial,cultural,andecologicalimportance[J].EnvironmentalScience&TechnologyLetters,2022,9(4):333-338.
[31]ChenC,GaoL,DingP,etal.ThePotentialImpactof6ppdanditsOxidationProduct6ppd-QuinoneonHumanHealth:ACaseStudyonTheirInteractionwithHsa[J].Chemosphere,2024.
[32]ZhangY-J,XuT-T,YeD-M,etal.WidespreadN-(1,3-dimethylbutyl)-N′-phenyl-p-phenylenediaminequinoneinsize-fractionedatmosphericparticlesanddustofdifferentindoorenvironments[J].EnvironmentalScience&TechnologyLetters,2022,9(5):420-425.
[33]徐艳琼,龚伟,王建锋,等.橡胶防老剂对作业人员健康的影响及可能机制[J].职业与健康,2015,31(16):2180-2183.
[34]HuntinkN,DattaR,NoordermeerJ.Addressingdurabilityofrubbercompounds[J].Rubberchemistryandtechnology,2004,77(3):476-511.
[35]RHKrijgerCB,KKlein-Hartwig,HJKretzschmar.Newphenylenediamineantiozonantsforcommoditiesbasedonnaturalandsyntheticrubber[J].FoodAdditivesandContaminan,2005.
[36]RodgersTF,WangY,HumesC,etal.BioretentionCellsProvidea10-FoldReductionin6PPD-QuinoneMassLoadingstoReceivingWaters:EvidencefromaFieldExperimentandModeling[J].EnvironmentalScience&TechnologyLetters,2023.
[37]牟守勇,李淑环,徐丽红.绿色轮胎国家标准解读[J].轮胎工业,2022,42(04):200-203.
[38]所同川,李忠明.废旧橡胶回收利用新技术[J].江苏化工,2004(06):1-6.
[39]ZoroufchiBenisK,BehnamiA,MinaeiS,etal.Environmentaloccurrenceandtoxicityof6PPDquinone,anemergingtirerubber-derivedchemical:areview[J].EnvironmentalScience&TechnologyLetters,2023,10(10):815-823. |