全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

基于tio2晶须的光催化工艺过程和装备优化研究

DOI: 10.3969/j.issn.1671-7627.2008.02.024, PP. 105-110

Keywords: 光催化,tio2晶须,化学工程,强化

Full-Text   Cite this paper   Add to My Lib

Abstract:

光催化技术作为一种高级氧化技术,在环保和能源等领域一直是人们研究的热点.然而,由于光催化自身量子效率低,因此未能很好地实用化.陆小华等多年来以新型光催化材料为基础,依据其特定结构和性能,对其进行了一定的修饰改性,并结合化学工程在放大技术和强化手段中的优势,解决了实际应用过程中的壁垒,使光催化技术真正面向了实用化.

References

[1]  hagfeldta,grtzelm.light-inducedredoxreactionsinnanocrystallinesystems[j].chemicalreviews,1995(1):49-68.doi:10.1021/cr00033a003.
[2]  kamatpv.photochemistryonnonreactiveandreactive(semiconductor)surface[j].chemicalreviews,1993(1):267-300.
[3]  hoffmannmr,martinst,choiw.environmentalapplicationsofsemiconductorphotocatalysis[j].chemicalreviews,1995(1):69-96.doi:10.1021/cr00033a004.
[4]  herrmannjm.heterogeneousphotocatalysis:fundamentalsandapplicationstotheremovalofvarioustypesofaqueouspollutants[j].catalysistoday,1999(1):115-129.
[5]  陆小华,何明,杨祝红.一种高比表面积的氧化钛合成方法[p].cn03158274.5,2004.
[6]  heming,luxiaohua,fengxin.asimpleapproachtomesoporousfibroustitaniafrompotassiumdititanate[j].chemicalcommunications,2004,(19):2202-2203.doi:10.1039/b408609k.
[7]  kawaguchih.photocatalyticdecompositionofphenolinthepresenceoftitaniumdioxide[j].environmentaltechnologyletters,1984,(11):471-474.
[8]  刘畅,暴宁钟,杨祝红.过渡金属离子掺杂改性tio2的光催化性能研究进展[j].催化学报,2001(2):215-218.doi:10.3321/j.issn:0253-9837.2001.02.031.
[9]  杨祝红,暴宁钟,郑仲.用溶剂热处理法制备tio2纤维及其光催化降解甲基橙的活性[j].催化学报,2002(6):539-542.doi:10.3321/j.issn:0253-9837.2002.06.015.
[10]  史月萍,杨祝红,冯新.掺铂二氧化钛纤维光催化降解氯仿的研究[j].催化学报,2003(9):663-668.doi:10.3321/j.issn:0253-9837.2003.09.007.
[11]  周雪锋,李伟,陆小华.二氧化钛表面担载pt的纳米结构afm研究[j].催化学报,2007(4):327-332.doi:10.3321/j.issn:0253-9837.2007.04.010.
[12]  cassanoae,martinca,brandirj.photoreactoranalysisanddesign:fundamentalsandapplications[j].industrialandengineeringchemistryresearch,1995.2155-2201.
[13]  毛传峰,童少平,刘维屏.臭氧与tio2/uv协同降解对氯苯酚[j].环境污染与防治,2003(5):259-261.doi:10.3969/j.issn.1001-3865.2003.05.002.
[14]  简丽,张彭义,毕海.水中天然有机物的臭氧强化光催化降解研究[j].环境科学学报,2005,(12):1630-1635.doi:10.3321/j.issn:0253-2468.2005.12.011.
[15]  刘志国,杨祝红,郑仲.纳米tio2光催化降解dmf[j].南京工业大学学报(自然科学版),2005(5):12-16.doi:10.3969/j.issn.1671-7627.2005.05.003.
[16]  belverc,lopez-munozmj,coronadojm.palladiumenhancedresistancetodeactivationoftitaniumdioxideduringthephotocatalyticoxidationoftoluenevapors[j].appliedcatalysisb:environmental,2003(3):497-509.doi:10.1016/s0926-3373(03)00291-1.
[17]  gonzalez-garcian,ayllonja,domenechx.tio2deactivationduringthegas-phasephotocatalyticoxidationofdimethylsulfide[j].appliedcatalysisb:environmental,2004(1):69-77.
[18]  tangyuchao,huchun,wangyizhong.progressindeactivationoftitaniumoxidephotocatalyst[j].progressinchemistry,2005(2):225-232.doi:10.3321/j.issn:1005-281x.2005.02.007.
[19]  chensongzhe,zhangpengyi,zhuwanpeng.deactivationoftio2photocatalyticfilmsloadedonaluminium:xpsandafmanalyses[j].appliedsurfacescience,2006,(20):7532-7538.doi:10.1016/j.apsusc.2005.09.023.
[20]  文高飞,李伟,杨祝红.tio2晶须在深度净化饮用水过程中失活原因分析[j].环境科学,2007(9):2025-2029.doi:10.3321/j.issn:0250-3301.2007.09.023.
[21]  hashimotok,irieh,fujishimaa.tio2photocatalysis:ahistoricaloverviewandfutureprospects[j].japanesejournalofappliedphysics,2005,(12):8269-8285.
[22]  fujishimaa,hondak.electrochemicalphotolysisofwateratasemiconductorelectrode[j].nature,1972.37-38.
[23]  careyjh,lawrencej,tosinehm.photodechlorinationofpcb’sinthepresenceoftitaniumdioxideinaqueoussuspensions[j].bulletinofenvironmentalcontaminationandtoxicology,1976(6):697-701.doi:10.1007/bf01685575.
[24]  franksn,bardaj.heterogeneousphoto-catalyticoxidationofcyanideioninaqueoussolutionattio2powders[j].journaloftheamericanchemicalsociety,1977(1):303-308.
[25]  rookjj.formationofhaloformsduringchlorinationofnaturewaters[j].watertreatmentandexamination,1974(2):234-243.
[26]  baoningzhong,fengxin,yangzhonghong.highlyefficientliquid-phasephotooxidationofanazodyemethylorangeovernovelnanostructuredporoustitanate-basedfiberofself-supportedradiallyalignedh2ti8o17*115h2onanorods[j].environmentalscienceandtechnology,2004.2729-2736.
[27]  杨祝红,暴宁钟,刘畅.二氧化钛纤维的制备及其光催化活性研究[j].高等学校化学学报,2002(7):1371-1374.doi:10.3321/j.issn:0251-0790.2002.07.033.
[28]  陈国钧,郑仲,冯新.氯仿在悬浮tio2体系中的降解[j].南京工业大学学报(自然科学版),2004(4):5-9.doi:10.3969/j.issn.1671-7627.2004.04.002.
[29]  王湘艳,何明,周雪锋.具有纳米结构的tio2纤维光催化氧化活性[j].南京工业大学学报(自然科学版),2005(6):1-5.doi:10.3969/j.issn.1671-7627.2005.06.001.
[30]  rayak.design,modellingandexperimentationofanewlargescalephotocatalyticreactorforwatertreatment[j].chemicalengineeringscience,1999.3113-3125.
[31]  rayak,beenackersacm.developmentofanewphotocatalyticreactorforwaterpurification[j].catalysistoday,1998.73-78.doi:10.1016/s0920-5861(97)00123-5.
[32]  陈国钧,杨祝红,郑仲.液固二相光催化反应器模型的研究[j].高校化学工程学报,2005(2):202-207.doi:10.3321/j.issn:1003-9015.2005.02.011.
[33]  朱健,杨祝红,李伟.非均相光催化水处理管式反应器的放大设计[j].现代化工,2005(5):55-58.doi:10.3321/j.issn:0253-4320.2005.05.015.
[34]  陆小华,杨祝红,冯新.一种连续降解含有机污染物废水的光催化反应装置及其处理技术[p].cn03112729.0,2003.
[35]  王福平,苏彤.用纤维tio2作光催化剂降解饮用水中腐殖质[j].高技术通讯,1998,(12):21-24.
[36]  杨祝红,张晶波,朱键.一种深度水处理光催化集成装置[p].cn200520068468.0,2006.
[37]  lewandowskim,ollisdf.atwo-sitekineticmodelsimulatingapparentdeactivationduringphotocatalyticoxidationofaromaticsontitaniumdioxide(tio2)[j].appliedcatalysisb:environmental,2003(4):309-327.doi:10.1016/s0926-3373(02)00310-7.
[38]  lewandowskim,ollisdf.extensionofatwo-sitetransientkineticmodeloftio2deactivationduringphotocatalyticoxidationofaromatics:concentrationvariationsandcatalystregenerationstudies[j].appliedcatalysisb:environmental,2003(3):223-238.
[39]  foxma,dulaymt.heterogeneousphotocatalysis[j].chemicalreviews,1993(1):341-357.
[40]  pirkanniemik,sillanpaam.heterogeneouswaterphasecatalysisasanenvironmentalapplication:areview[j].chemosphere,2002.1047-1060.
[41]  李伟,杨祝红,陆小华.水中痕量有机物光催化降解初始速率排序和预测[j].化工学报,2007(6):1426-1431.doi:10.3321/j.issn:0438-1157.2007.06.015.
[42]  hsiaocy,leecl,ollisdf.heterogeneousphotocatalysisdegradationofdilutesolutionsofdichlomethane,chloroformandcarbontetrachlorinewithilluminatedtio2photocatalysts[j].journalofcatalysis,1983.418-423.
[43]  hussaina,paulm.surfacephotochemistry-cdsphotoinducedcis-transisomerizationofolefins[j].journalofphysicalchemistry,1985.5815-5821.
[44]  唐玉朝,胡春,王怡中.光催化反应机理及动力学研究进展[j].化学进展,2002(3):192-199.doi:10.3321/j.issn:1005-281x.2002.03.005.
[45]  於蕾,何明,陆小华.介孔tio2的结构分析[j].南京工业大学学报(自然科学版),2005(2):81-84.doi:10.3969/j.issn.1671-7627.2005.02.020.
[46]  周雪锋,李伟,张妍.以ots自组装单分子膜为探针研究tio2液相空穴氧化机理[j].物理化学学报,2007(7):1113-1116.
[47]  文高飞,杨祝红,李伟.光沉积法抑制二氧化钛晶须光活性[j].过程工程学报,2007(6):1159-1162.doi:10.3321/j.issn:1009-606x.2007.06.019.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133