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...

乙二醇醇解松木屑反应特征及机理分析

, PP. 1431-1439

Keywords: 松木屑,醇解,产物,分布,机理

Full-Text   Cite this paper   Add to My Lib

Abstract:

?利用酸化的乙二醇作溶剂对松木屑进行醇解,探讨了温度和时间对醇解转化率的影响。利用热重分析、红外光谱分析、扫描电镜及x射线衍射考察了醇解残渣的性质。分别利用傅里叶变换红外光谱及色质联用分析了正己烷不溶物和可溶物中组分的分布及特征。结果表明,松木屑转化率在90min、160℃达到最大值95.3%。松木屑中纤维素无定形区的组分和木质素发生了解离,醇解残渣的表面结构被破坏;正己烷不溶物是含有羟基、甲氧基及醚键等含氧官能团的化合物;正己烷可溶物主要由苯二甲酸酯、硬脂酸甲酯、2-甲基己酸丙酯、2-甲基丙酸、聚乙二醇及未反应的乙二醇组成。乙二醇与松木屑解离的羧酸发生酯化反应,对液相产物具有稳定作用,促进了松木屑的醇解反应;醇解过程中乙二醇自缩聚生成聚乙二醇,增大了乙二醇的消耗。

References

[1]  bpstatisticalreviewofworldenergy[z].2013.6.
[2]  吕卫军.生物质和生物质能的未来[j].造纸信息,2013,(3).(lvwei-jun,thefutureofbiomassandbiomassenergy[j].chinapapernewsletter,2013,(3).)
[3]  levanmaor,zhaoq,dimag,petracconed.newprocessfortheacid-catalyzedconversionofcellulosicbiomass(ac3b)intoalkyllevulinatesandotherestersusingauniqueone-potsystemofreactionandproductextraction[j].catallett,2011,141(2):271-276.
[4]  bungayrr.biomassrefining[j].science,1982,218(4573):643-646.
[5]  balibanrc,eliaja,floudasca.biomasstoliquidtransportationfuels(btl)systems:processsynthesisandglobaloptimizationframework[j].energyenvironsci,2013,6(1):267-287.
[6]  mettlerms,mushrifsh,paulsenad,javadekarad,vlachosdg,dauenhauerpj.revealingpyrolysischemistryforbiofuelsproduction:conversionofcellulosetofuransandsmalloxygenates[j].energyenvironsci,2012,5(1):5414-5424.
[7]  liuzg,zhangfs.effectsofvarioussolventsontheliquefactionofbiomasstoproducefuelsandchemicalfeedstocks[j].energyconversmanage,2008,49(12):3498-3504.
[8]  songfengwangq,caijy,wangyh,zhangjj,yuawq,xuj.lignindepolymerization(ldp)inalcoholovernickel-basedcatalystsviaafragmentation-hydrogenolysisprocess[j].energyenvironsci,2013,6(3):994-1007.
[9]  yuehr,zhaoyj,maxb,gongjl.ethuleneglycol:properties,synthesis,andapplications[j].chemsocrew,2012,41(11):4218-4244.
[10]  谭洪.生物质热裂解机理试验研究[d].浙江:浙江大学,2005.(tanhong.experimentalstudyonthemechanismofbiomasspyrolysis[d].zhejiang:zhejianguniversity,2005.)
[11]  wangg,liw,libq,chenhk.tgstudyonpyrolysisofbiomassanditsthreecomponentsundersyngas[j].fuel,2008,87(4/5):552-558.
[12]  meszarose,jakabe,varhegyig.tg/ms,py-gc/msandthm-gc/msstudyofthecompositionandthermbehaviorofextractivecomponentsofrobiniapesudoacacia[j].janalapplpyrolysis,2007,79(1/2):61-71.
[13]  张海荣,庞浩,石锦志,廖兵.木粉及其组分的多元醇酸催化热化学液化[j].林产化学与工业,2012,32(2):14-20.(zhanghai-rong,panghao,shijing-zhi,liaobing.tgstudyonmajorbiomasscomponentsanditsliquefiedresiduesfrompyrolysis[j].chemicalindustryandengineeringprogress,2012,32(2):14-20.)
[14]  wangzy,caojq,wangj.pyrolyticcharacteristicofpinewoodinaslowlyheatingandgassweepingfixed-bedreactor[j].janalapplpyrolysis,2009,84(2):179-184.
[15]  ronceromb,torresal,colomjf,vidat.tcfbleachingofwheatstrawpulpusingozoneandxylanase,parta:paperqualityassessment[j].bioresourcetechnol,2003,87(3):305-314.
[16]  王文亮,虞宇翔,常建民,白甜甜.两种树皮热解微晶结构及生物油组分对比[j].燃料化学学报,2013,41(11):1310-1315.(wangwen-liang,yuyu-xiang,changjian-min,baitian-tian.comparativeanalysisofmicro-crystalstructuresandbio-oilsfrompyrolyisisoftwobarks[j].journaloffuelchemistryandtechnology,2013,41(11):1310-1315.)
[17]  lievensc,mourantd,hem,gunawanr,lix,licz.anft-irspectroscopicstudyofcarbonylfunctionalitiesinbio-oils[j].fuel,2011,90(1):3417-3423.
[18]  李坚.木材波普学[m].北京:科学出版社,2003.(lijian.woodspectroscopy[m].beijing:sciencepress,2003.)
[19]  yamadat,onoh.characterizationoftheproductsresultingfromethyleneglycolliquefactionofcellulose[j].jwoodsci,2001,47(6):458-464.
[20]  hubergw,iborras,cormaa.synthesisoftransportationfuelsfrombiomass:chemistry,catalysts,andengineering[j].chemrev,2006,6(9):4044-4098.
[21]  zouxw,qintf,huanglh,zhangx,yangz,wangy.mechanismsandmainregularitiesofbiomassliquefactionwithalcoholicsolvents[j].energyfuels,2009,23(10):5213-5218.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133