首页> 外文学位 >STEREOLOGICAL ANALYSIS OF THE MACROPORE STRUCTURE OF CHARS PRODUCED UNDER VARIOUS PYROLYSIS CONDITIONS AND THE INFLUENCE OF MACROPORE STRUCTURE ON CHAR GASIFICATION RATES IN THE PRESENCE OF STRONG DIFFUSIONAL LIMITATIONS.
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STEREOLOGICAL ANALYSIS OF THE MACROPORE STRUCTURE OF CHARS PRODUCED UNDER VARIOUS PYROLYSIS CONDITIONS AND THE INFLUENCE OF MACROPORE STRUCTURE ON CHAR GASIFICATION RATES IN THE PRESENCE OF STRONG DIFFUSIONAL LIMITATIONS.

机译:各种热解条件下生成的炭的宏观结构的体学分析以及在强扩散限制下宏观结构对炭化率的影响。

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The effects of pyrolysis heating rates, particle size and ash upon the macropore structure of coal-derived chars were investigated for an Illinois #6 and a lignite coal. A new direct method was used to characterize the macropore structure of the chars. Polished cross-sections of char particles were analyzed with an integrated video microscopy/digital image processing system. Pore size analysis combined a stereological model and digital image processing techniques to overcome the limitations of indirect methods. Obtained results were used to investigate the effects of the macropore structure on global gasification rates under conditions of strong intraparticle diffusional limitations. Simulations employed a two-dimensional discrete model and image processing techniques to treat the reaction of the complex pore structures observed.; The coals were pyrolyzed in nitrogen to 900{dollar}spcirc{dollar}C with a microcomputer- controlled, heated wire-mesh reactor at heating rates between 0.1{dollar}spcirc{dollar}C/s and 1000{dollar}spcirc{dollar}C/s. The Illinois #6 char showed an increasingly complex macropore structure as the heating rate was increased. Measurements revealed a definite shift toward the formation of cellular structures with thin-walled large and small cavities. Pyrolysis heating rates had virtually no effect on the macropore structure of lignite chars. Three fractions of Illinois #6 coal with different particle sizes were also pyrolyzed at 10{dollar}spcirc{dollar}C/s. The char from the smallest size fraction exhibited a few large primary cavities but very little secondary pore formation was present. In contrast, the chars from the larger size fraction contained a large amount of secondary pores. The presence of ash during the pyrolysis process appeared to have very little effect on the development of the macropore structure.; Discrete modeling of char gasification with strong diffusional limitations showed that the wide variation of macropore structure exhibited by the Illinois #6 chars had a marked effect on the global gasification rates. An increase in the amount of secondary pores formed at the higher heating rates and larger particle sizes produced much more pronounced maxima in the rate vs conversion curves.
机译:对于伊利诺伊州6号煤和褐煤,研究了热解加热速率,粒度和灰分对煤衍生焦炭大孔结构的影响。一种新的直接方法用于表征炭的大孔结构。使用集成的视频显微镜/数字图像处理系统分析了焦炭颗粒的抛光横截面。孔径分析结合了立体模型和数字图像处理技术,以克服间接方法的局限性。获得的结果用于研究在强烈的颗粒内扩散限制条件下大孔结构对整体气化速率的影响。模拟采用二维离散模型和图像处理技术来处理观察到的复杂孔结构的反应。用微机控制的加热的金属丝网反应器将煤在氮气中热解到900 {spcirc {dollar} C,加热速率在0.1 {dollar C / s和1000 {dollar {dollar之间} C / s。随着加热速率的提高,伊利诺伊州#6煤焦显示出越来越复杂的大孔结构。测量表明,向着带有薄壁大腔和小腔的蜂窝结构的形成有了明显的转变。热解加热速率对褐煤焦的大孔结构几乎没有影响。伊利诺伊州#6煤的三分之三具有不同的粒径也以10 {spcirc {dol {C / s的速度被热解。来自最小尺寸部分的焦炭表现出一些大的初级孔洞,但几乎没有次级孔洞的形成。相反,来自较大尺寸部分的焦炭包含大量的次级孔。热解过程中灰分的存在似乎对大孔结构的发展影响很小。具有强烈扩散限制的炭化气的离散模型表明,伊利诺伊州#6炭表现出的大孔结构的广泛变化对整体气化速率有显着影响。在较高的加热速率和较大的颗粒尺寸下形成的次级孔的数量增加,在速率与转化率曲线中产生了更为明显的最大值。

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