燃料化学学报
燃料化學學報
연료화학학보
JOURNAL OF FUEL CHEMISTRY AND TECHNOLOGY
2014年
4期
408-413
,共6页
胡海华%段伦博%陈晓平%韩冬%潘玄
鬍海華%段倫博%陳曉平%韓鼕%潘玄
호해화%단륜박%진효평%한동%반현
O2/CO2%燃烧特性%压力%热重分析%动力学
O2/CO2%燃燒特性%壓力%熱重分析%動力學
O2/CO2%연소특성%압력%열중분석%동역학
O2/CO2%combustion characteristics%pressure%thermo-gravimetric analysis%kinetics
增压O2/CO2燃烧是一种可高效分离回收CO2的新兴燃烧技术,其燃烧机理与常压空气、常压O2/CO2燃烧存在较大差异。在加压热重分析仪上研究了增压条件下总压、氧浓度、气氛及粒径等反应参数对美国烟煤和淮北无烟煤燃烧特性的影响,确定了煤的着火温度,并对其进行燃烧动力学分析。结果表明,增压O2/CO2气氛下,随着压力或氧浓度的增加,DTG曲线向低温区移动,煤样整体燃烧速率加快。压力提升、氧浓度增加及煤粉细化均可改善O2/CO2气氛下煤样的着火特性。常压O2/CO2气氛下煤粉燃烧基本属于一级反应;增压O2/CO2气氛下,低温区属于0.5级反应,而高温区属于1.5级反应。
增壓O2/CO2燃燒是一種可高效分離迴收CO2的新興燃燒技術,其燃燒機理與常壓空氣、常壓O2/CO2燃燒存在較大差異。在加壓熱重分析儀上研究瞭增壓條件下總壓、氧濃度、氣氛及粒徑等反應參數對美國煙煤和淮北無煙煤燃燒特性的影響,確定瞭煤的著火溫度,併對其進行燃燒動力學分析。結果錶明,增壓O2/CO2氣氛下,隨著壓力或氧濃度的增加,DTG麯線嚮低溫區移動,煤樣整體燃燒速率加快。壓力提升、氧濃度增加及煤粉細化均可改善O2/CO2氣氛下煤樣的著火特性。常壓O2/CO2氣氛下煤粉燃燒基本屬于一級反應;增壓O2/CO2氣氛下,低溫區屬于0.5級反應,而高溫區屬于1.5級反應。
증압O2/CO2연소시일충가고효분리회수CO2적신흥연소기술,기연소궤리여상압공기、상압O2/CO2연소존재교대차이。재가압열중분석의상연구료증압조건하총압、양농도、기분급립경등반응삼수대미국연매화회북무연매연소특성적영향,학정료매적착화온도,병대기진행연소동역학분석。결과표명,증압O2/CO2기분하,수착압력혹양농도적증가,DTG곡선향저온구이동,매양정체연소속솔가쾌。압력제승、양농도증가급매분세화균가개선O2/CO2기분하매양적착화특성。상압O2/CO2기분하매분연소기본속우일급반응;증압O2/CO2기분하,저온구속우0.5급반응,이고온구속우1.5급반응。
The pressurized O2/CO2 combustion is a potential technique, which makes CO2 separation and recovery more efficient. However, it has a notably different mechanism from the air combustion and the O2/CO2 combustion under atmospheric pressure. The combustion characteristics of an American bituminous coal and a Huaibei anthracite coal under O2/CO2 atmosphere were studied employing the thermo-gravimetric analyzer at various pressures ( p=0. 1 ~1. 5 MPa). The influences of pressure, oxygen concentration, atmosphere and particle size on the coal combustion characteristics were inspected, and the ignition temperature was obtained. Also, the combustion kinetic parameters were calculated. The results indicate that as the total pressure or oxygen concentration increases, DTG curves move to the low temperature zone and the overall combustion rate of coal samples is accelerated under pressurized O2/CO2 atmosphere. The ignition characteristics of pulverized coal could be improved through the pressure enhancement, the increase of oxygen concentration and the reduction of particle size. The pulverized coal combustion under atmospheric pressure is basically a first order reaction. For pressurized oxy-fuel combustion, the reaction order is 0. 5 under the low temperature zone, while the reaction order becomes 1. 5 under the high temperature zone.