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热解压力对生物质焦结构及气化反应性能的影响

, PP. 1309-1315

Keywords: 生物质半焦,加压热解,碳微晶结构,气化反应性

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Abstract:

?利用加压固定床反应器、吸附仪、x射线衍射仪、元素分析仪、电感耦合等离子原子发射光谱仪等考察了热解压力对生物质半焦(以下简称半焦)产率、物化结构、元素组成的影响规律.同时,利用热天平对不同热解压力下所制半焦的气化行为进行了考察.结果表明,随热解压力升高,半焦产率增大,当压力升至1.0mpa后,半焦产率基本不变;半焦中c元素含量随热解压力的升高而增加,而h元素含量和bet比表面积则减小;此外,随热解压力升高,玉米秸秆焦和锯末焦的石墨化程度增强,而稻壳焦的石墨化程度则基本不受热解压力影响.气化反应的研究表明,玉米秸秆焦及锯末焦的平均气化反应速率随热解压力的提高而减小,而稻壳焦的平均气化反应速率基本不受热解压力的影响.热解压力对半焦bet比表面积及碳微晶结构的影响规律与气化反应速率变化规律的对比研究表明,热解压力引起半焦微晶结构的变化是造成热解压力对半焦气化反应速率影响的主要原因.

References

[1]  robertsdg,harrisdj,walltf.ontheeffectsofhighpressureandheatingrateduringcoalpyrolysisonchargasificationreactivity[j].energyfuels,2003,17(4):887-895.
[2]  leecw,jenkinsrg,schoberthh.structureandreactivityofcharfromelevatedpressurepyrolysisofillinoisno.6bituminouscoal[j].energyfuels,1992,6(1):40-47.
[3]  zengd,fletcherth.effectsofpressureoncoalpyrolysisandcharmorphology[j].energyfuels,2005,19(5):1828-1838.
[4]  zhangy,ashizawam,kajitanis,miurak.proposalofasemi-empiricalkineticmodeltoreconcilewithgasificationreactivityprofilesofbiomasschars[j].fuel,2008,87(4/5):475-481.
[5]  diblasic.combustionandgasificationratesoflignocellulosicchars[j].progenergycombust,2009,35(2):121-140.
[6]  cetine,guptar,moghtaderib.effectofpyrolysispressureandheatingrateonradiatapinecharstructureandapparentgasificationreactivity[j].fuel,2005,84(10):1328-1334.
[7]  岳金方,应浩,左春丽.生物质加压气化技术的研究与应用现状[j].可再生能源,2006,6(130):29-32.(yuejin-fang,yinghao,zuochun-li.researchandapplicationstatusonbiomasspressuregasification[j].renewableenergyresources,2006,6(130):29-32.)
[8]  fermosoj,gilmv,garcias,pevidac,pisjj,rubieraf.kineticparametersandreactivityforthesteamgasificationofcoalcharsobtainedunderdifferentpyrolysistemperaturesandpressures[j].energyfuels,2011,25(8):3574-3580.
[9]  suncl,xiongyq,liuqx,zhangmy.thermogravimetricstudyofthepyrolysisoftwochinesecoalsunderpressure[j].fuel,1997,76(7):639-644.
[10]  yanghp,chenhp,jufd,yanr,zhangsh.influenceofpressureoncoalpyrolysisandchargasification[j].energyfuels,2007,21(6):3165-3170.
[11]  fermosoj,gilmv,borregoag,pevidac,pisjj,rubieraf.effectofthepressureandtemperatureofdevolatilizationonthemorphologyandsteamgasificationreactivityofcoalchars[j].energyfuels,2010,24(10):5586-5595.
[12]  okumuray,hanaokat,sakanishik.effectofpyrolysisconditionsongasificationreactivityofwoodybiomass-derivedchar[j].proccombustins,2009,32:2013-2020.
[13]  cetine,moghtaderib,guptar,walltf.biomassgasificationkinetics:influencesofpressureandcharstructure[j].combustscitechnol,2005,177(4):765-791.
[14]  cheng,yuq,sjstrmk.reactivityofcharfrompyrolysisofbirchwood[j].janalapplpyrolysis,1997,40-41:491-499.
[15]  degrootwf,shafizadehf.kineticsofgasificationofdouglasfirandcottonwoodcharsbycarbondioxide[j].fuel,1984,63(2):210-216.
[16]  dupontc,nocquett,dacostajrja,verne-tournonc.kineticmodellingofsteamgasificationofvariouswoodybiomasschars:influenceofinorganicelements[j].bioresourtechnol,2011,102(20):9743-9748.
[17]  arendtp,vanheekkh.comparativeinvestigationsofcoalpyrolysisunderinertgasandh2atlowandhighheatingratesandpressuresupto10mpa[j].fuel,1981,60(9):779-787.
[18]  鞠付栋,陈汉平,杨海平,沈应强,张世红.煤加压热解过程中c和h的转变规律[j].煤炭转化,2009,32(1):5-9.(jufu-dong,chenhan-ping,yanghai-ping,shenying-qiang,zhangshi-hong.conversionofcandhduringcoalpressurizedpyrolysis[j].coalconversion,2009,32(1):5-9.)
[19]  chenh,luoz,yangh,juf,zhangs.pressurizedpyrolysisgasificationofchinesetypicalcoalsamples[j].energyfuels,2008,22(2):1136-1141.
[20]  范晓雷,张薇,周志杰,王辅臣,于遵宏.热解压力及气氛对神府煤焦气化反应活性的影响[j].燃料化学学报,2005,33(5):530-533.(fanxiao-lei,zhangwei,zhouzhi-jie,wangfu-chen,yuzun-hong.effectsofpyrolysispressureandatmosphereongasificationreactivityofshenfuchar[j].journaloffuelchemistryandtechnology,2005,33(5):530-533.)
[21]  huangy,yinx,wuc,wangc,xiej,zhouz,mal,lih.effectsofmetalcatalystsonco2gasificationreactivityofbiomasschar[j].biotechnoladv,2009,27(5):568-572.

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