[1]TAODP,WUZX,SOBHYA.Investigationofnanobubbleenhancedreverseanionicflotationofhematiteandassociatedmechanisms[J].PowderTechnology,2021,379:12-25.
[2]YANGSY,WANGLG.Structuralandfunctionalinsightsintostarchesasdepressantforhematiteflotation[J].MineralsEngineering,2018,124:149-157.
[3]张兆元,李艳军,袁帅,等.东鞍山贫赤铁矿石阶段磨矿—磁选—阴离子反浮选试验[J].金属矿山,2015(6):78-82.
[4]QUASTK.Literaturereviewontheuseofnaturalproductsintheflotationofironoxideores[J].MineralsEngineering,2017,108:12-24.
[5]PATTANAIKA,VENUGOPALR.Investigationofadsorptionmechanismofreagents(surfactants)systemanditsapplicabilityinironoreflotation—Anoverview[J].ColloidandInterfaceScienceCommunications,2018,25:41-65.
[6]刘太合,徐大波.关宝山铁矿石工艺矿物学分析[J].现代矿业,2018,34(6):136-139.
[7]潘鹏飞,朱一民,徐冬林,等.新型抑制剂DLW-4用于鞍千公司混磁精反浮选[J].金属矿山,2015(6):74-77.
[8]WANGGC,NGUYENAV,MITRAS,etal.Areviewofthemechanismsandmodelsofbubble-particledetachmentinfrothflotation[J].SeparationandPurificationTechnology,2016,170:155-172.
[9]LEISTNERT,PEUKERUA,RUDOLPHM.Howgangueparticlesizecanaffecttherecoveryofultrafineandfineparticlesduringfrothflotation[J].MineralsEngineering,2017,109:1-9.
[10]HOANGDH,KUPKAN,PEUKERUA,etal.Flotationstudyoffinegrainedcarbonaceoussedimentaryapatiteore—Challengesinprocessmineralogyandimpactofhydrodynamics[J].MineralsEngineering,2018,121:196-204.
[11]YINWZ,LID,LUOXM,etal.Effectandmechanismofsideriteonreverseflotationofhematite[J].InternationalJournalofMine-ralsMetallurgyandMaterials,2016,23(4):373-379.
[12]HAMPTONMA,NGUYENAV.Nanobubblesandthenanobubblebridgingcapillaryforce[J].AdvancesinColloidandInterfaceScience,2010,154(1/2):30-55.
[13]ZHOUWG,CHENH,OULM,etal.Aggregationofultra-finescheeliteparticlesinducedbyhydrodynamiccavitation[J].InternationalJournalofMineralProcessing,2016,157:236-240.
[14]KNUEPFERP,DITSCHERLEINL,PEUKERUA.Nanobubbleenhancedagglomerationofhydrophobicpowders[J].ColloidsandSurfacesA-PhysicochemicalandEngineeringAspects,2017,530:117-123.
[15]CALGAROTOS,AZEVEDOA,RUBIOJ.Flotationofquartzparticlesassistedbynanobubbles[J].InternationalJournalofMineralProcessing,2015,137:64-70.
[16]AHMADIR,KHODADADIDA,ABDOLLAHYM,etal.Nano-microbubbleflotationoffineandultrafinechalcopyriteparticles[J].InternationalJournalofMiningScienceandTechnology,2014,24(4):559-566.
[17]MAFY,TAODP,TAOYJ.EffectsofnanobubblesincolumnflotationofChinesesub-bituminouscoal[J].InternationalJournalofCoalPreparationandUtilization,2022,42(4):1126-1142.
[18]SOBHYA,TAOD.High-efficiencynanobubblecoalflotation[J].InternationalJournalofCoalPreparationandUtilization,2013,33(5):242-256.
[19]TAODP.Recentadvancesinfundamentalsandapplicationsofnanobubbleenhancedfrothflotation:areview[J].MineralsEngineering,2022,183:107554.
[20]SOBHYA,TAOD.Nanobubblecolumnflotationoffinecoalparticlesandassociatedfundamentals[J].InternationalJournalofMine-ralProcessing,2013,124:109-116.
[21]SEETHARAMANR,RAVISANKARV,BALASUBRAMANIANV.CorrosionperformanceoffrictionstirweldedAA2024aluminiumalloyundersaltfogconditions[J].TransactionsofNonferrousMetalsSocietyofChina,2015,25(5):1427-1438.
[22]ADLANMN,PALANIANDYP,AZIZHA.Optimizationofcoagulationanddissolvedairflotation(DAF)treatmentofsemi-aerobiclandfillleachateusingresponsesurfacemethodology(RSM)[J].Desalination,2011,277(1/2/3):74-82.
[23]ZHANGXY,WANGQS,WUZX,etal.Anexperimentalstudyonsizedistributionandzetapotentialofbulkcavitationnanobubbles[J].InternationalJournalofMineralsMetallurgyandMaterials,2020,27(2):152-161.
[24]SHRIMALIK,ATLURIV,WANGY,etal.Thenatureofhematitedepressionwithcornstarchinthereverseflotationofironore[J].JournalofColloidandInterfaceScience,2018,524:337-349.
[25]刘若华,孙伟,金娇.改性淀粉抑制赤铁矿反浮选石英的作用机理研究[J].矿冶工程,2018,38(1):50-53,59.
[26]MAXD.Roleofsolvationenergyinstarchadsorptiononoxidesurfaces[J].ColloidsandSurfacesA:PhysicochemicalandEngineeringAspects,2008,320(1/2/3):36-42.
[27]LUDF,HUYH,LIY,etal.Reverseflotationofultrafinemagneticconcentratebyusingmixedanionic/cationiccollectors[J].Physi-cochemicalProblemsofMineralProcessing,2017,53(2):724-736.
[28]李伟.新型抑制剂对铁矿物的抑制性能研究[D].沈阳:东北大学,2015.
[29]梅建庭,曹翠,郭海英,等.新型捕收剂TD-Ⅱ和抑制剂K6-1在东鞍山赤铁矿反浮选中的应用[J].现代矿业,2016,32(7):95-96.