Li K,Xu D F,Liao H,et al.A review on the generation,discharge,distribution,environmental behavior,and toxicity (especially to microbial aggregates) of nano-TiO2 insewage and surface-water and related research prospects[J].The Science of the Total Environment,2022,824:153866
Kumar N,Chauhan N S,Mittal A,et al.TiO2 and itscomposites as promising biomaterials:A review[J].BioMetals,2018,31(2):147-159
Wu X W,Liu P,Gong Z M,et al.Humic acid and fulvicacid hinder long-term weathering of microplastics in lakewater[J].Environmental Science&Technology,2021,55(23):15810-15820
Kang X,Liu S,Dai Z,et al.Titanium dioxide:From engineering to applications[J].Catalysts,2019,9(2):191
师曜,王颖,李垚,等.个人护理品中纳米二氧化钛调查及健康风险评价[J].生态毒理学报,2022,17(4):533-544 Shi Y,Wang Y,Li Y,et al.Titanium dioxide nanoparticlesin personal care products and titanium health risk assessment to adult consumers[J].Asian Journal of Ecotoxicology,2022,17(4):533-544(in Chinese)
赵卓凡.纳米二氧化钛光催化剂在环境污染治理中的应用[J].科技创新与应用,2016(27):182-183Zhao Z F.Application of nanometer titanium dioxide photocatalyst in environmental pollution control[J].Technology Innovation and Application,2016 (27):182-183(inChinese)
Zeshan M,Bhatti I A,Mohsin M,et al.Remediation of pesticides using TiO2 based photocatalytic strategies:Areview[J].Chemosphere,2022,300:134525
Gupta B,Poudel B K,Ruttala H B,et al.Hyaluronic acidcapped compact silica-supported mesoporous titania nanoparticles for ligand-directed delivery of doxorubicin[J].Acta Biomaterialia,2018,80:364-377
Dedman C J,King A M,Christie-Oleza J A,et al.Environmentally relevant concentrations of titanium dioxidenanoparticles pose negligible risk to marine microbes[J].Environmental Science Nano,2021,8(5):1236-1255
Han X,Lv P,Wang L G,et al.Impact of nano-TiO2 onhorizontal transfer of resistance genes mediated by filamentous phage transduction[J].Environmental Science:Nano,2020,7(4):1214-1224
Farouk H U,Raman A A A,Daud W M A W.TiO2 catalyst deactivation in textile wastewater treatment:Currentchallenges and future advances[J].Journal of Industrialand Engineering Chemistry,2016,33:11-21
Yang X,Rosario-Ortiz F L,Lei Y,et al.Multiple roles of dissolved organic matter in advanced oxidation processes[J].Environmental Science&Technology,2022,56(16):11111-11131
Wu S J,Hong H L,Qian L,et al.The fate of dissolvedorganic matter along the mangrove creek-to-estuary continuum[J].Estuarine,Coastal and Shelf Science,2021,260:107496
Zhao J,Wang Z Y,Ghosh S,et al.Phenanthrene bindingby humic acid-protein complexes as studied by passivedosing technique[J].Environmental Pollution,2014,184:145-153
Erhayem M,Sohn M.Stability studies for titanium dioxidenanoparticles upon adsorption of Suwannee River humicand fulvic acids and natural organic matter[J].The Science of the Total Environment,2014,468-469:249-257
Wang Z Y,Zhang L,Zhao J,et al.Environmental processes and toxicity of metallic nanoparticles in aquatic systems as affected by natural organic matter[J].Environmental Science:Nano,2016,3(2):240-255
Doll T E,Frimmel F H.Photocatalytic degradation of carbamazepine,clofibric acid and iomeprol with P25 andHombikat UV100 in the presence of natural organic matter (NOM) and other organic water constituents[J].WaterResearch,2005,39(2/3):403-411
Zhan M J,Yang X,Xian Q M,et al.Photosensitized degradation of bisphenol A involving reactive oxygen speciesin the presence of humic substances[J].Chemosphere,2006,63(3):378-386
Ren M J,Qu G F,Li H,et al.Influence of dissolved organic matter components on arsenate adsorption/desorption by TiO2[J].Journal of Hazardous Materials,2019,378:120780
Lu Y,Zhang H,Wang H,et al.Humic acid mediated toxicity of faceted TiO2 nanocrystals to Daphnia magna[J].Journal of Hazardous Materials,2021,416:126112
Wormington A M,Coral J,Alloy M M,et al.Effect of natural organic matter on the photo-induced toxicity of titanium dioxide nanoparticles[J].Environmental Toxicology and Chemistry,2017,36(6):1661-1666
Yu Q,Wang Z,Zhai Y J,et al.Effects of humic substances on the aqueous stability of cerium dioxide nanoparticles and their toxicity to aquatic organisms[J].TheScience of the Total Environment,2021,781:146583
Yang S P,Bar-Ilan O,Peterson R E,et al.Influence of humic acid on titanium dioxide nanoparticle toxicity todeveloping zebrafish[J].Environmental Science&Technology,2013,47(9):4718-4725
Zhao T H,Fang M Y,Tang Z,et al.Adsorption,aggregation and sedimentation of titanium dioxide nanoparticlesand nanotubes in the presence of different sources of humic acids[J].The Science of the Total Environment,2019,692:660-668
Yu S J,Liu J F,Yin Y G,et al.Interactions between engineered nanoparticles and dissolved organic matter:A review on mechanisms and environmental effects[J].Journal of Environmental Sciences (China),2018,63:198-217
Ding Y,Shi Z Q,Ye Q T,et al.Chemodiversity of soildissolved organic matter[J].Environmental Science&Technology,2020,54(10):6174-6184
Li Y J,Yang C,Guo X T,et al.Effects of humic acids onthe aggregation and sorption of nano-TiO2[J].Chemosphere,2015,119:171-176
Yang K,Lin D,Xing B.Interactions of humic acid withnanosized inorganic oxides[J].Langmuir,2009,25(6):3571-3576
Philippe A,Schaumann G E.Interactions of dissolved organic matter with natural and engineered inorganiccolloids:A review[J].Environmental Science&Technology,2014,48(16):8946-8962
Sun D D,Lee P F.TiO2 microsphere for the removal of humic acid from water:Complex surface adsorptionmechanisms[J].Separation and Purification Technology,2012,91:30-37
Tang Z,Cheng T.Stability and aggregation of nanoscaletitanium dioxide particle (nTiO2):Effect of cation valence,humic acid,and clay colloids[J].Chemosphere,2018,192:51-58
Zhang Y,Chen Y S,Westerhoff P,et al.Impact of naturalorganic matter and divalent cations on the stability of aqueous nanoparticles[J].Water Research,2009,43(17):4249-4257
Baalousha M.Aggregation and disaggregation of iron oxide nanoparticles:Influence of particle concentration,pH and natural organic matter[J].The Science of the TotalEnvironment,2009,407(6):2093-2101
Loosli F,Le Coustumer P,Stoll S.TiO2 nanoparticles aggregation and disaggregation in presence of alginate andSuwannee River humic acids.pH and concentrationeffects on nanoparticle stability[J].Water Research,2013,47(16):6052-6063
Mudunkotuwa I A,Grassian V H.Citric acid adsorptionon TiO2 nanoparticles in aqueous suspensions at acidicand circumneutral pH:Surface coverage,surface speciation,and its impact on nanoparticle-nanoparticle interactions[J].Journal of the American Chemical Society,2010,132(42):14986-14994
Chen Y,Gao Q,Chen W X,et al.A mechanistic study of stable dispersion of titanium oxide nanoparticles by humicacid[J].Water Research,2018,135:85-94
Filius J D,Meeussen J C L,Lumsdon D G,et al.Modeling the binding of fulvic acid by goethite:The speciation of adsorbed FA molecules[J].Geochimica et Cosmochimica Acta,2003,67(8):1463-1474
Lin D H,Xingt B.Adsorption of phenolic compounds bycarbon nanotubes:Role of aromaticity and substitution of hydroxyl groups[J].Environmental Science&Technology,2008,42(19):7254-7259
Chen W,Qian C,Liu X Y,et al.Two-dimensional correlation spectroscopic analysis on the interaction betweenhumic acids and TiO2 nanoparticles[J].EnvironmentalScience&Technology,2014,48(19):11119-11126
Wang X L,Lu J L,Xu M G,et al.Sorption of pyrene byregular and nanoscaled metal oxide particles:Influence of adsorbed organic matter[J].Environmental Science&Technology,2008,42(19):7267-7272
Wang X L,Ma E X,Shen X F,et al.Effect of model dissolved organic matter coating on sorption of phenanthreneby TiO2 nanoparticles[J].Environmental Pollution,2014,194:31-37
Organization for Economic Co-operation and Development (OECD).OECD guideline for the testing of chemicals:Testing of dispersion stability with TG 318.ENV/JM/MONO[R].Paris:OECD,2020,9:23
Mathew R A,Wu G,Zhang Y,et al.Natural organic matter adsorption conditions influence photocatalytic reactionpathways of phosphate-treated titanium dioxide nanoparticles[J].Environmental Science:Nano,2021,8(8):2165-2176
Zhang R C,Tu C,Zhang H B,et al.Enhancing effects of dissolved and media surface-bound organic matter on titanium dioxide nanoparticles transport in iron oxide-coatedporous media under acidic conditions[J].Journal of Hazardous Materials,2022,438:129421
Chekli L,Zhao Y X,Tijing L D,et al.Aggregation behaviour of engineered nanoparticles in natural waters:Characterising aggregate structure using on-line laser lightscattering[J].Journal of Hazardous Materials,2015,284:190-200
Rottman J,Platt L C,Sierra-Alvarez R,et al.Removal of TiO2 nanoparticles by porous media:Effect of filtrationmedia and water chemistry[J].Chemical EngineeringJournal,2013,217:212-220
Ren M J,Horn H,Frimmel F H.Aggregation behavior of TiO2 nanoparticles in municipal effluent:Influence of ionic strengthen and organic compounds[J].Water Research,2017,123:678-686
李青,张帅,王济.天然有机质对TiO2纳米颗粒与PCB-77藻类毒性影响及致毒机理[J].生态毒理学报,2021,16(6):244-255 Li Q,Zhang S,Wang J.Effect and mechanism of naturalorganic matter on toxicity of TiO2 nanoparticles and PCB-77 to algae[J].Asian Journal of Ecotoxicology,2021,16(6):244-255(in Chinese)
Chowdhury I,Cwiertny D M,Walker S L.Combined factors influencing the aggregation and deposition of nanoTiO2 in the presence of humic acid and bacteria[J].Environmental Science&Technology,2012,46(13):6968-6976
Gao L,Zhou B H,Wang F,et al.Effect of dissolved organic matters and inorganic ions on TiO2 photocatalysis of diclofenac:Mechanistic study and degradation pathways[J].Environmental Science and Pollution ResearchInternational,2020,27(2):2044-2053
Liu G J,Zhang X R,Talley J W,et al.Effect of NOM onarsenic adsorption by TiO2 in simulated As (Ⅲ)-contaminated raw waters[J].Water Research,2008,42(8-9):2309-2319
Yang K,Xing B S.Sorption of phenanthrene by humicacid-coated nanosized TiO2 and ZnO[J].EnvironmentalScience&Technology,2009,43(6):1845-1851
Wang L L,Hou L,Wang X M,et al.Effects of the preparation method and humic-acid modification on the mobility and contaminant-mobilizing capability of fullerene nanoparticles (nC60)[J].Environmental Science Processes&Impacts,2014,16(6):1282-1289
Yang X J,Sun H W,Li G Y,et al.Fouling of TiO2 induced by natural organic matters during photocatalyticwater treatment:Mechanisms and regeneration strategy[J].Applied Catalysis B:Environmental,2021,294:120252
Chen X Y,Wang W P,Xiao H,et al.Accelerated TiO2photocatalytic degradation of acid orange 7 under visiblelight mediated by peroxymonosulfate[J].Chemical Engineering Journal,2012,193-194:290-295
Valencia S,Marín J M,Restrepo G,et al.Application of excitation-emission fluorescence matrices and UV/Vis absorption to monitoring the photocatalytic degradation of commercial humic acid[J].The Science of the Total Environment,2013,442:207-214
Wu W,Shan G Q,Xiang Q,et al.Effects of humic acidswith different polarities on the photocatalytic activity of nano-TiO2 at environment relevant concentration[J].Water Research,2017,122:78-85
Chen P,Cui W,Wang H,et al.The importance of intermediates ring-opening in preventing photocatalyst deactivation during toluene decomposition[J].Applied Catalysis B:Environmental,2020,272:118977
陈晨晨,余澜,周宋奕,等.纳米材料与水体其他污染物的复合暴露毒性研究进展[J].生态毒理学报,2023,18(4):174-187 Chen C C,Yu L,Zhou S Y,et al.Research advances oncomposite exposure toxicity of nanomaterials and otherpollutants in waters[J].Asian Journal of Ecotoxicology,2023,18(4):174-187(in Chinese)
Li Y,Niu J F,Shang E X,et al.Influence of dissolved organic matter on photogenerated reactive oxygen speciesand metal-oxide nanoparticle toxicity[J].Water Research,2016,98:9-18
Zhu X S,Zhou J,Cai Z H.TiO2 nanoparticles in the marine environment:Impact on the toxicity of tributyltin toabalone (Haliotis diversicolor supertexta) embryos[J].Environmental Science&Technology,2011,45(8):3753-3758
Gupta G S,Kansara K,Shah H,et al.Impact of humicacid on the fate and toxicity of titanium dioxide nanoparticles in Tetrahymena pyriformis and zebrafish embryos[J].Nanoscale Advances,2019,1(1):219-227
Lin D H,Ma S,Zhou K J,et al.The effect of waterchemistry on homoaggregations of various nanoparticles:Specific role of Cl-ions[J].Journal of Colloid and Interface Science,2015,450:272-278
Hou J,Lin D H,White J C,et al.Joint nanotoxicologyassessment provides a new strategy for developingnanoenabled bioremediation technologies[J].Environmental Science&Technology,2019,53(14):7927-7929
Tang Y L,Li S Y,Lu Y,et al.The influence of humicacid on the toxicity of nano-ZnO and Zn2+to the Anabaena sp.[J].Environmental Toxicology,2015,30(8):895-903
Yang X Y,Jiang C J,Hsu-Kim H,et al.Silver nanoparticle behavior,uptake,and toxicity in Caenorhabditis elegans:Effects of natural organic matter[J].EnvironmentalScience&Technology,2014,48(6):3486-3495
Collin B,Oostveen E,Tsyusko O V,et al.Influence of natural organic matter and surface charge on the toxicityand bioaccumulation of functionalized ceria nanoparticlesin Caenorhabditis elegans[J].Environmental Science&Technology,2014,48(2):1280-1289
Peng C,Zhang H,Fang H X,et al.Natural organic matterinduced alleviation of the phytotoxicity to rice (Oryza sativa L.) caused by copper oxide nanoparticles[J].Environmental Toxicology and Chemistry,2015,34(9):1996-2003
Lin D H,Ji J,Long Z F,et al.The influence of dissolvedand surface-bound humic acid on the toxicity of TiO2nanoparticles to Chlorella sp.[J].Water Research,2012,46(14):4477-4487
He X J,McAlliser D,Aker W G,et al.Assessing theeffect of different natural dissolved organic matters on thecytotoxicity of titanium dioxide nanoparticles with bacteria[J].Journal of Environmental Sciences (China),2016,48:230-236
Fadare O O,Wan B,Guo L H,et al.Humic acid alleviates the toxicity of polystyrene nanoplastic particles toDaphnia magna[J].Environmental Science:Nano,2019,6(5):1466-1477
Neale P A,JämtingÅK,O'Malley E,et al.Behaviour of titanium dioxide and zinc oxide nanoparticles in the presence of wastewater-derived organic matter and implications for algal toxicity[J].Environmental Science:Nano,2015,2(1):86-93
Deng R,Lin D H,Zhu L Z,et al.Nanoparticle interactions with co-existing contaminants:Joint toxicity,bioaccumulation and risk[J].Nanotoxicology,2017,11(5):591-612
Xin X Y,Chen B,Yang M,et al.A critical review on theinteraction of polymer particles and co-existing contaminants:Adsorption mechanism,exposure factors,effects onplankton species[J].Journal of Hazardous Materials,2023,445:130463
Mansfield C M,Alloy M M,Hamilton J,et al.Photo-induced toxicity of titanium dioxide nanoparticles to Daphnia magna under natural sunlight[J].Chemosphere,2015,120:206-210