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1)  pelionite
烛沥青煤
2)  coal tar pitch
煤沥青
1.
Study on property and modification of coal tar pitch for C/C composites;
炭/炭复合材料用煤沥青的改性及性能研究
2.
Study on rheogical properties of coal tar pitch modified with terephthalic aldehyde;
对苯二甲醛改性煤沥青的流变性能研究
3.
Mesophase microstructure of modified coal tar pitch;
改性煤沥青中间相的微观结构研究
3)  coal pitch
煤沥青
1.
Developing premium pre-baked anode with reformed coal pitch technology(Part A);
应用改性煤沥青技术研究开发优质预焙阳极(上)
2.
Developing premium pre-baked anode with reformed coal pitch technology(Part B);
应用改性煤沥青技术研究开发优质预焙阳极(下)
3.
The development of vapor-grown carbon fibers(VGCFs),which were synthesized by chemical vapor deposition method using low carbon hydrocarbon(methane,propylene,acetylene,benzene),deoiled asphalt and coal pitch as carbon sources,were reviewed.
综述了几种不同的碳源,如低碳烃(甲烷、丙烯、乙炔和苯等)、脱油沥青、煤沥青,采用化学气相沉积(CVD)法,按不同转化过程制备出气相生长炭纤维(VGCFs)的研究现状。
4)  pitch [英][pɪtʃ]  [美][pɪtʃ]
煤沥青
1.
Modification on coal-tar-pitch by additives;
添加剂对煤沥青筑路油改质作用
2.
It is found by IR spectra that during oxidative polymerization of pitch, the peaks of methane and methane in 3000~2900cm-1are derceased, the peaks of aromatic ring(C=C) in 1600cm-1 and substitute in 7.
煤沥青是一种热塑性物质,作为制备高比表面积微孔炭的原料需要进行不熔化处理。
3.
Activated carbons were prepared from asphalt coke, pitch and oxidated pitch by KOH activation method.
以沥青焦、煤沥青以及氧化沥青为原料,采用KOH活化法制备高比表面积活性炭。
5)  coal-Tar Pitch
煤沥青
1.
Rheogical behavior of coal-tar pitch modified with p-methyl benzaldehyde;
对甲基苯甲醛改性煤沥青的流变行为
2.
Effect of carbon nanotubes addition on the carbonization behavior of coal-tar pitch;
添加碳纳米管对煤沥青成焦行为的影响
3.
Effect of carbon black on the pyrolysis condensation of coal-tar pitch
炭黑对煤沥青热解缩聚行为的影响
6)  coal pitch spheres
煤沥青球
1.
Coal pitch was used as raw material to produce coal pitch spheres by suspension method,the coal pitch spheres were then turned to spherical activated carbon by processes which including stabilization,carbonization and activation in the experiment.
以煤沥青为主要原料采用悬浮法制备含致孔剂的煤沥青球后进行预氧化、炭化和活化,最终得到沥青基球形活性炭(PSAC)。
补充资料:高挥发分煤与沥青共炭化


高挥发分煤与沥青共炭化


  a.高挥发分煤单独炭化的焦炭光学组织 (各向同性’ 霪 b.沥青单独炭化的焦炭光学组织(片状) C.煤与沥青(70:30)共炭化时焦 炭的光学组织(细粒镶嵌)
  
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