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1、doi:10.3969/j.issn.1007-7545.2018.04.008鐵礬渣熱分解行為及焙燒脫硫機理研究胡明1,2,3,虎訓(xùn)3,邵哲如3,程易2,宮臣3,王婷婷3,徐鵬程3,齊景偉3(1.中國光大集團博士后工作站,北京100033;2.清華大學化學工程系,北京100084;3.光大環(huán)保技術(shù)研究院(南京)有限公司,南京211102)摘要:采用TG-DSC和高溫原位XRD分析方法對鐵礬渣熱分解過程進行研究,并通過電阻爐對鐵礬渣進行焙燒脫硫預(yù)處理。結(jié)果表明,鐵礬渣熱分解過程主要存在兩個分解反應(yīng),分別是NaFe3(SO4)
2、2(OH)6和Fe2(SO4)3的分解,800℃后的焙燒產(chǎn)物主要是ZnO·Fe2O3和Fe2O3;采用Kissinger法和Flynn-Wall-Ozawa法計算出鐵礬渣在350~450℃和630~800℃范圍內(nèi)兩個分解反應(yīng)的表觀活化能分別為150、170kJ/mol,兩個反應(yīng)均受界面化學反應(yīng)控制,反應(yīng)的機理函數(shù)G(α)分別為1-(1-α)1/3和1-(1-α)1/2。焙燒脫硫結(jié)果表明,在中性氣氛、溫度1300℃、焙燒時間20min、氣體流量0.4m3/h的條件下,鐵礬渣脫硫率為98.57%,焙燒脫硫后,鐵礬渣中的黃鈉鐵礬轉(zhuǎn)
3、化為ZnO·Fe2O3和Fe2O3,重金屬離子得到固化,有害元素得到有效脫除。關(guān)鍵詞:鐵礬渣;熱分解;焙燒預(yù)處理;脫硫中圖分類號:TF09文獻標志碼:A文章編號:1007-7545(2018)04-0000-00StudyonThermalDecompositionBehaviorandRoastingDesulfurizationMechanismofJarositeResidueHUMing1,2,3,HUXun3,SHAOZhe-ru3,CHENGYi2,GONGChen3,WANGTing-ting3,XUPeng-
4、cheng3,QIJing-wei3(1.PostdoctoralWorkstationofChinaEverbrightGroup,Beijing100033,China;2.DepartmentofChemicalEngineering,TsinghuaUniversity,Beijing100084,China;3.EverbrightEnvirotech(China)Ltd.,Nanjing211102,China)Abstract:Thermaldecompositionprocessofjarositeresid
5、uewasinvestigatedbyTG-DSCandhightemperaturein-situXRD.Jarositeresiduewaspretreatedinresistancefurnacetoremovesulfur.TheresultsshowthattherearetwodecompositionreactionsofNaFe3(SO4)2(OH)6andFe2(SO4)3inthermaldecompositionprocessofjarositeresidue,andZnO?Fe2O3andFe2O3i
6、sthemainproductafterjarositeresidue’sbeingroastedat800℃.Activationenergyofthermaldecompositionreactionattemperaturerangesof350~450℃and630~800℃is150kJ/moland170kJ/molrespectivelycalculatedbyKissingermethodandFlynn-Wall-Ozawamethod.Thetworeactionsaresubjecttointerfac
7、ialchemicalreactioncontrolwithreactionmechanismfunctionG(α)of1-(1-α)1/3and1-(1-α)1/2respectively.Theresultsofroastingdesulfurizationshowthatthedesulfurizationrateis98.57%undertheoptimumconditionsincludingroastingtemperatureof1300℃,roastingtimeof20minatneutralatmosp
8、here,andgasflowrateof0.4m3/h.ZnO?Fe2O3andFe2O3arethemainphasesofroastedjarositeresidue,heavymetalionsaresolidified,andharmfulelementsareremovedef