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...

生物质微波辅助液化主要影响因素的研究现状

DOI: 10.3969/j.issn.1000-2006.2014.01.028, PP. 157-162

Keywords: 生物质,微波辅助液化,影响因素

Full-Text   Cite this paper   Add to My Lib

Abstract:

生物质微波辅助液化技术是新型、高效的生物质利用技术,可以解决传统生物质液化技术中存在的液化时间长、液化产物黏度高和生产成本高等问题。生物质微波辅助液化技术由于微波电介质加热的特殊性,因而与传统液化相比其影响因素既有相似之处又有不同之处。笔者对生物质微波辅助液化中的主要影响因素,如生物质含水率、加热速率、液固比、生物质物料特性和溶剂种类等研究现状进行了分析和论述,提出了今后的研究方向及建议。

References

[1]  munsp,hassanem.liquefactionoflignocellulosicbiomasswithmixturesofethanolandsmallamountsofphenolinthepresenceofmethanesulfonicacidcatalyst[j].journalofindustrialandengineeringchemistry,2004,10(5):722-727.
[2]  karagozs,bhaskart,mutoa,etal.effectofrbandcscarbonatesfortheproductionofphenolsfromliquefactionofwoodbiomass[j].fuel,2004,83(17-18):2293-2299.
[3]  魏玉萍,程发,李厚萍,等.基于天然高分子的聚氨酯材料[j].高分子通报,2004(2):22-28.weiyp,chengf,lihp,etal.naturalpolymerforpolyurethanematerial[j].polymerbulletin,2004(2):22-28.
[4]  liangly,maozh,liyb,etal.liquefactionofcropresiduesforpolyolproduction[j].bioresources,2006,1(2):248-256.
[5]  linl,yaoy,yoshiokam,etal.molecularweightsandmolecularweightdistributionsofliquefiedwoodobtainedbyacidcatalyzedphenolysis[j].journalofappliedpolymerscience,1997,64(7):351-357.
[6]  gejj,zhongw,guozr,etal.biodegradablepolyurethanematerialsfrombarkandstarch.i.highlyresilientfoams[j].journalofappliedpolymerscience,2000,77(12):2575-2580.
[7]  hassanem,shukryn.polyhydricalcoholliquefactionofsomelignocellulosicagriculturalresidues[j].industrialcropsandproducts,2008,27(1):33-38.
[8]  jonesda,lelyveldtp,mavrofidissd,etal.microwaveheatingapplicationsinenvironmentalengineering-areview[j].resourcesconservationandrecycling,2002,34(2):75-90.
[9]  thostensonet,choutw.microwaveprocessing:fundamentalsandapplications[j].compositesparta:appliedscienceandmanufacturing,1999,30(9):1055-1071.
[10]  金钦汉,戴树珊,黄卡玛.微波化学[m].北京:科学出版社,1999.
[11]  oloyedea,groombridgep.theinfluenceofmicrowaveheatingonthemechanicalpropertiesofwood[j].journalofmaterialsprocessingtechnology,2000,100(1-3):67-73.
[12]  sungpm,hassanmbe,gilmouri.rapidliquefactionoflignocellulosicbiomassbyusingdioxane-polarsolvents[r].newzealand:the9thapcchecongressandchemeca,2002.
[13]  yamadat,onoh,oharas,etal.characterizationoftheproductsresultingfromdirectliquefactionofcellulosei.identificationofintermediatesandtherelevantmechanismindirectphenolliquefactionofcelluloseinpresenceofwater[j].journalofthejapanwoodresearchsociety,1996,42(11):1098-1104.
[14]  pusj,shiraishin.liquefactiionofwoodwithoutacatalystii.weightlossbygasificationduringwoodliquefaction,andeffectsoftemperatureandwater[j].journalofthejapanwoodresearchsociety,1993,39(4):453-458.
[15]  almamh,yoshiokam,yaoy,etal.preparationofsulfuricacid-catalyzedphenolatedwoodresin[j].woodscienceandtechnology,1998,32(4):297-308.
[16]  masakatsum,harumik,akihikos,etal.rapidpyrolysisofwoodblockbymicrowaveheating[j].jounalofanalyticalandappliedpyrolysis,2004,71(1):187-199.
[17]  kabirmf,khalidkb.dielectricpropertiesofrubberwoodatmicrowavefrequencieswithanopen-endedcoaxialline[j].woodandfiberscience,1997,29(4):319-324.
[18]  陈秋玲,孙可伟,张春红.生物质聚氨酯制备中微波预处理对液化的影响研究[j].林产化学与工业,2012,32(2):43-46.chenql,sunkw,zhangch.effectsofmicrowavepretreatmentonliquefactioninthepreparationofbiomasspolyurethane[j].chemistryandindustryofforestproducts,2012,32(2):43-46.
[19]  万益琴,刘玉环,林向阳,等.生物质的热解液化[r].南京:可再生能源规模化发展国际研讨会暨第三届泛长三角能源科技论坛,2006.
[20]  王喜明,薛振华,石丽慧,等.微波改性木材的初步研究[j].木材工业,2002,16(6):16-19.wangxm,xuezh,shilh,etal.preliminarystudyonmicrowavemodifiedwood[j].chinawoodindustry,2002,16(6):16-19.
[21]  江涛,周志芳,王清文.高强度微波辐射对落叶松木材渗透性的影响[j].林业科学,2006,42(11):87-92.jiangt,zhouzf,wangqw.effectsofintensivemicrowaveirradiationonthepermeabilityoflarchwood[j].scientiasilvaesinicae,2006,42(11):87-92.
[22]  冯国东,周永红,郭晓昕.微波液化木材及聚醚多元醇的制备[j].热固性脂,2009,24(4):14-17.fenggd,zhouyh,guoxx.woodliquefactionbymicrowaveheatingandpreparationofbiomasspolyetherpolyol[j].thermosettingresin,2009,24(4):14-17.
[23]  戈进杰,吴睿,邓葆力,等.基于甘蔗渣的生物降解材料研究(1)甘蔗渣的液化反应和聚醚酯多元醇的制备[j].高分子材料科学与工程,2003,19(2):194-198.gejj,wur,dengbl,etal.studiesonthebiodegradablepolyurethanematerialsbasedonbagasse(1)theliquefactionofbagasseandpreparationofpolyetheresterpolyol[j].polymermaterialsscienceandengineering,2003,19(2):194-198.
[24]  akhtarj,noraa.areviewonprocessconditionsforoptimumbio-oilyieldinhydrothermalliquefactionofbiomass[j].renewableandsustainableenergyreviews,2011,15(3):1615-1624.
[25]  陈秋玲,李如燕,孙可伟,等.利用麦秆制聚氨酯多元醇研究[j].高分子通报,2009(11):37-43.chenql,liry,sunkw,etal.researchonliquefactionofwheatstrawforpolyurethanepolyol[j].polymerbulletin,2009(11):37-43.
[26]  pusj,shiraishin.liquefactiionofwoodwithoutacatalysti.timecourseofwoodliquefactionwithphenolsandeffectsofwood/phenolratios[j].journalofthejapanwoodresearchsociety,1993,39(4):446-452.
[27]  kurimotoy,doisc,tamuray.specieseffectsonwoodliquefactioninpolyhydricalcohols[j].holzforschung,1999,53:617-622.
[28]  maldasd,shiraishin.liquefactionofbiomassinthepresenceofphenolandh2ousingalkaliesandsaltsasthecatalyst[j].biomassandbioenergy,1997,12(4):273-279.
[29]  kappeco.controlledmicrowaveheatinginmodernorganicsynthesis[j].angewandtechemieinternationaledition,2004,43(46):6250-6284.
[30]  budarinvl,clarkjh,laniganba,etal.microwaveassisteddecompositionofcellulose:anewthermochemicalrouteforbiomassexploitation[j].bioresourcetechnology,2010,101(10):3776-3779.
[31]  panh,zhengzf,chungyh.microwave-assistedliquefactionofwoodwithpolyhydricalcoholsanditsapplicationinpreparationofpolyurethane(pu)foams[j].europeanjournalofwoodandwoodproducts,2012,70(4):461-470.
[32]  liuj,takdar,karitas,etal.microwaveassistedpretreatmentofrecalcitrantsoftwoodinaqueousglycerol[j].bioresourcetechnology,2010,101(23):9355-9360.
[33]  sakaik.chemistryofbark[g]//hondn-s,shiraishin.woodandcellulosicchemistry.newyork:marceldekker,2001.
[34]  leewj,linms.preparationandapplicationofpolyurethaneadhesivemadefrompolyhydricalcoholliquefiedtaiwanacaciaandchinesefir[j].jourmaiofappliedpolymerscience,2008,109(1):23-3l.
[35]  chenfg,luzm.liquefactionofwheatstrawandpreparationofrigidpolyurethanefoamfromliquefactionproduct[j].journalofappliedpolymerscience,2009,111(1):508-516.
[36]  kr?ana,?agare.microwavedrivenwoodliquefactionwithglycols[j].bioresourcetechnology,2009,100(12):3143-3146.
[37]  kr?ana,kunaverm.microwaveheatinginwoodliquefaction[j].journalofappliedpolymerscience,2006,101(2):1051-1056.
[38]  冯国东,周永红,郭小昕,等.微波液化木材动力学研究及产物分析[j].林产化学与工业,2010,30(3):66-72.fenggd,zhouyh,guoxx,etal.kineticsofwoodliquefactionusingmicrowaveheatingandproductsanalysis[j].chemistryandindustryofforestproducts,2010,30(3):66-72.
[39]  xiaowh,hanlj,zhaoyy.comparativestudyofconventionalandmicrowave-assistedliquefactionofcorn[j].industrialcropsandproducts,2011,34(3):1602-1606.
[40]  zhuangyb,guojx,chenlm,etal.microwave-assisteddirectliquefactionofulvaproliferaforbio-oilproductionbyacidcatalysis[j].bioresourcetechnology,2012,116:133-139.
[41]  kellyrm,rowsonna.microwavereductionofoxidisedilmeniteconcentrates[j].mineralsengineering,1995,8(11):1427-1438.
[42]  leesh,wangsq.effectofwateronwoodliquefactionandthepropertiesofphenolatedwood[j].holzforschung,2005,59(6):628-634.
[43]  hassanmbe,sungpm.liquefactionofpinebarkusingphenolandloweralcoholswithmethanesulfonicacidcatalyst[j].journalofindustrialandengineeringchemistry,2002,8(4):359-364.
[44]  牟群英,李贤军,盛忠志.木材微波加热厚度的确定[j].中南林学院学报,2006,26(1):1-2.mouqy,lixj,shengzz.researchonthethicknessofwoodheatedbymicrowaves[j].journalofcentralsouthforestryuniversity,2006,26(1):1-2.
[45]  zhengzf,panh,huangyb,etal.rapidliquefactionofwoodinpolyhydricalcoholsundermicrowaveheatinganditsliquefiedproductsforpreparationofrigidpolyurethanefoam[j].theopenmaterialssciencejournal,2011,5:1-8.
[46]  yamadat,onoh.rapidliquefactionoflignocellulosicwastebyusingethylenecarbonate[j].bioresourcetechnology,1999,70(1):61-67.
[47]  bolyose,lawrenced,nordina.biomassasanenergysource:thechallengesandthepathforward[r].sweden:the3rdinternationaldisposalconference,2003.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133