工程热物理学报
工程熱物理學報
공정열물이학보
JOURNAL OF ENGINEERING THERMOPHYSICS
2009年
9期
1597-1600
,共4页
李海龙%张军营%赵永椿%张凯%张立麒%郑楚光
李海龍%張軍營%趙永椿%張凱%張立麒%鄭楚光
리해룡%장군영%조영춘%장개%장립기%정초광
飞灰%润湿%表面张力%煤燃烧
飛灰%潤濕%錶麵張力%煤燃燒
비회%윤습%표면장력%매연소
fly ash%wetting%surface tension%coal combustion
以小龙潭电厂燃煤飞灰及其不同粒径范围的分级灰为对象,采用X射线荧光光谱、X射线衍射、离子色谱、Zeta电位、扫描电镜等实验方法研究了飞灰的物理化学特征.同时采用沉降实验、表面张力实验研究了三种不同润湿剂对飞灰的润湿性能.研究发现,溶液对飞灰的润湿能力不仅取决于其气液界面张力,还与飞灰的组成、表面电位以及形貌特征密切相关.亲水性物质含量的增加,颗粒表面电荷与润湿剂分子间的静电吸引,颗粒表面的棱角孔隙等均可以促进其润湿;温度越高飞灰润湿性能越好,且温度对飞灰润湿过程影响较大,温度较高(60℃)时润湿剂种类及浓度对飞灰润湿过程的影响不明显.
以小龍潭電廠燃煤飛灰及其不同粒徑範圍的分級灰為對象,採用X射線熒光光譜、X射線衍射、離子色譜、Zeta電位、掃描電鏡等實驗方法研究瞭飛灰的物理化學特徵.同時採用沉降實驗、錶麵張力實驗研究瞭三種不同潤濕劑對飛灰的潤濕性能.研究髮現,溶液對飛灰的潤濕能力不僅取決于其氣液界麵張力,還與飛灰的組成、錶麵電位以及形貌特徵密切相關.親水性物質含量的增加,顆粒錶麵電荷與潤濕劑分子間的靜電吸引,顆粒錶麵的稜角孔隙等均可以促進其潤濕;溫度越高飛灰潤濕性能越好,且溫度對飛灰潤濕過程影響較大,溫度較高(60℃)時潤濕劑種類及濃度對飛灰潤濕過程的影響不明顯.
이소룡담전엄연매비회급기불동립경범위적분급회위대상,채용X사선형광광보、X사선연사、리자색보、Zeta전위、소묘전경등실험방법연구료비회적물이화학특정.동시채용침강실험、표면장력실험연구료삼충불동윤습제대비회적윤습성능.연구발현,용액대비회적윤습능력불부취결우기기액계면장력,환여비회적조성、표면전위이급형모특정밀절상관.친수성물질함량적증가,과립표면전하여윤습제분자간적정전흡인,과립표면적릉각공극등균가이촉진기윤습;온도월고비회윤습성능월호,차온도대비회윤습과정영향교대,온도교고(60℃)시윤습제충류급농도대비회윤습과정적영향불명현.
The physicochemical characteristics of fly ash and their diameter separation fraction from Xiaolongtan power plant has been studied with X-ray fluorescence spectrometry,X-ray diffraction,ion chromatography,zeta potential and scanning electronic microscopy.Sedimentation experiments and surface-tension tests have been adopted to study the wettability of fly ash in three difierent wetting agents.The results indicate that wettability of fly ash in solution depends not only on the gas-liquid surface tension,but also on composition,surface potential,and particle morphology of fly ash.Increasing of hydrophilic mineral content,electrostatic attraction between particles and wetting agent molecules,edges of particles,and pores on the ash surface can make wetting more easily.Better wettability of fly ash particles exhibit with increasing temperature of the wetting agents.Wettability of fly ash is greatly affected by temperature,it can hardly be changed by agents type and concentration at a higher temperature of such as 60℃.