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第12期 孙晓飞等:K3AF6加入对NFQO,基金属陶瓷阳极电解腐蚀的影响 .1595. 中的电解腐蚀行为,该阳极的腐蚀是以金属相Cu [6]W ang JW,Lai Y Q.Tian Z L et al Temnpemature of priary 的电化学腐蚀开始的,然后是陶瓷相中的Fe03优 crystallization in part of system NaA F6 K3A F6 A IF3.MTS Light Metals2008.513 先发生化学溶解.向NAF。-AF3体系中添加 [7]Lorentsen O A.Thonstad J Electmolysis and post-testng of inert KAF6能明显降低阳极的腐蚀速率,然而K3AF cemet anodes/Light Me Pmcoodings of Sessions TMS Annu- 的加入量不宜过高.在AF3质量分数为30%时, alMeeting Warendale 2002 457 K3AF6的质量分数应该控制在20%左右,此时金属 [8]LaiY Q.Tian ZL LiJ etal Results fmom 100h electrolsis tes 陶瓷阳极表现出较好的耐腐蚀性能.金属陶瓷阳极 ting ofNFe2O based cemet as nert anode in akm inum reduc- 比金属或陶瓷具有更复杂的结构,因此也给其电解 tion Trans NonfermusMet Soc Chna 2006.16.970 [9]W ang H Z Thonstad J The behavior of nert anodes as a finction 工艺和腐蚀规律的研究带来极大的挑战,除电解质 of sme operating panmee Light Meal Pmcodings of Ses 组成外,电解温度、电解质的过热度等都与腐蚀速率 sions AME AnnualM ceting Warendale 1989:283 密切相关 [10]Luo T W ang ZW.YuX G.Analysis on electmlysis cormsion of cemet inert anode based on nickel ferrate frmn the electrical 参考文献 mechanism.MTS Light Metals 2007:941 [11]Ray S P.Inert Anode Containng Oxides of Nickel Imon and Znc [1]Paw lk R P.Inert anodes an update TMS Light Metals 2008. Useful for The Ekctrolytic Pmduction of Metals US Patent No 1039 64231952000 [2]X ie H W.Wang JX.ZhaiY C et al Research on bw tempera- [12]Zhou C H.Ma SL LiG X.et al Research on new type of low ture alm inim electrolysis in molten salts Mater Rev 2009 23 temperature elctmlyte systomn:solubility and solution rae ofal- (9):13 m ina Nonfermous Met 1998 50(2):81 (谢宏伟,王锦霞,翟玉春,等。低温熔盐铝电解的研究进展, (周传华,马淑兰,李国勋,等,新型低温铝电解质体系的研 材料导报,2009,23(9):13) 究:氧化铝的溶解度与溶解速度.有色金属,199850(2): [3]Liu R D.Yang Z H.LiX W,et al Research on potassim cryo- 81) lite for low temperature ahm nim electrolysis Light Met 2009 [13]Jentoftsen T E Lorentsen O A.Dew ing EW.etal Sombility of (10):18 imn and nickel oxdes in cryolite alm ina melts/Light Metals (刘东任,杨占红,李旺兴,等,钾冰晶石低温电解质研究现 Proceedings of Sessions TMS Annual Meeting W arrendale 状.轻金属,2009(10):18) 2001.455 [4]W ang J W.Lai Y Q.Tian Z L et al Investigation of 5Cu- [14]Yang JH.Hryn JN.Davis B R.et al New opportinities for (I0NDNF20)nert anode cormosion during bw-temperatume alm nm elctmolysis with metal anodes in a low iemperature ahm inum electmolysis TMS LightMetals 2007:525 electmolyte system-TMS Light Meta ls 2004:321 [5]Tian ZL LaiY Q LiX Z etal Effect ofCu contenton the cor [15]Yang JH.H ryn JN.KnmdickG K.Alm inum eketmlysis tests rosion behaviour of Cu/(10N D 90N Fe2O)cemets in abm inum with inert anodes in KFA lF3 based electrolytes TMS LightMet ekctmlysis TMS LightMetals 2007:915 as2006.421第 12期 孙晓飞等: K3AlF6加入对 NiFe2O4基金属陶瓷阳极电解腐蚀的影响 中的电解腐蚀行为.该阳极的腐蚀是以金属相 Cu 的电化学腐蚀开始的‚然后是陶瓷相中的 Fe2O3 优 先发生化学溶解.向 Na3AlF6 --AlF3 体系中添加 K3AlF6能明显降低阳极的腐蚀速率‚然而 K3AlF6 的加入量不宜过高.在 AlF3 质量分数为 30%时‚ K3AlF6的质量分数应该控制在 20%左右‚此时金属 陶瓷阳极表现出较好的耐腐蚀性能.金属陶瓷阳极 比金属或陶瓷具有更复杂的结构‚因此也给其电解 工艺和腐蚀规律的研究带来极大的挑战.除电解质 组成外‚电解温度、电解质的过热度等都与腐蚀速率 密切相关. 参 考 文 献 [1] PawlekRP.Inertanodes:anupdate.TMSLightMetals‚2008: 1039 [2] XieHW‚WangJX‚ZhaiYC‚etal.Researchonlowtempera- turealuminiumelectrolysisinmoltensalts.MaterRev‚2009‚23 (9):13 (谢宏伟‚王锦霞‚翟玉春‚等.低温熔盐铝电解的研究进展. 材料导报‚2009‚23(9):13) [3] LiuRD‚YangZH‚LiXW‚etal.Researchonpotassiumcryo- liteforlowtemperaturealuminium electrolysis.LightMet‚2009 (10):18 (刘东任‚杨占红‚李旺兴‚等.钾冰晶石低温电解质研究现 状.轻金属‚2009(10):18) [4] WangJW‚LaiY Q‚TianZL‚etal.Investigationof5Cu- (10NiO-NiFe2O4) inertanodecorrosionduringlow-temperature aluminumelectrolysis.TMSLightMetals‚2007:525 [5] TianZL‚LaiYQ‚LiXZ‚etal.EffectofCucontentonthecor- rosionbehaviourofCu/(10NiO-90NiFe2O4) cermetsinaluminum electrolysis.TMSLightMetals‚2007:915 [6] WangJW‚LaiYQ‚TianZL‚etal.Temperatureofprimary crystallizationinpartofsystemNa3AlF6-K3AlF6-AlF3.MTSLight Metals‚2008:513 [7] LorentsenOA‚ThonstadJ.Electrolysisandpost-testingofinert cermetanodes∥LightMetals:ProceedingsofSessions‚TMSAnnu- alMeeting.Warrendale‚2002:457 [8] LaiYQ‚TianZL‚LiJ‚etal.Resultsfrom100helectrolysistes- tingofNiFe2O4 basedcermetasinertanodeinaluminumreduc- tion.TransNonferrousMetSocChina‚2006‚16:970 [9] WangHZ‚ThonstadJ.Thebehaviorofinertanodesasafunction ofsomeoperatingparameters∥LightMetals:ProceedingsofSes- sions‚AIMEAnnualMeeting.Warrendale‚1989:283 [10] LuoT‚WangZW‚YuXG.Analysisonelectrolysiscorrosionof cermetinertanodebasedonnickelferratefrom theelectrical mechanism.MTSLightMetals‚2007:941 [11] RaySP.InertAnodeContainingOxidesofNickel‚IronandZinc UsefulforTheElectrolyticProductionofMetals:USPatent‚No. 6423195.2000 [12] ZhouCH‚MaSL‚LiGX‚etal.Researchonnewtypeoflow temperatureelectrolytesystem:solubilityandsolutionrateofalu- mina.NonferrousMet‚1998‚50(2):81 (周传华‚马淑兰‚李国勋‚等.新型低温铝电解质体系的研 究:氧化铝的溶解度与溶解速度.有色金属‚1998‚50(2): 81) [13] JentoftsenTE‚LorentsenOA‚DewingEW‚etal.Solubilityof ironandnickeloxidesincryolite-aluminamelts∥LightMetals: ProceedingsofSessions‚ TMS AnnualMeeting. Warrendale‚ 2001:455 [14] YangJH‚HrynJN‚DavisBR‚etal.Newopportunitiesfor aluminum electrolysiswithmetalanodesinalow temperature electrolytesystem.TMSLightMetals‚2004:321 [15] YangJH‚HrynJN‚KrumdickGK.Aluminumelectrolysistests withinertanodesinKF-AlF3-basedelectrolytes.TMSLightMet- als‚2006:421 ·1595·
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