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首页> 外文期刊>International Journal of Coal Geology >Maceral/ microlithotype partitioning with particle size of pulverized coal: Examples from power plants burning Central Appalachian and Illinois basin coals
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Maceral/ microlithotype partitioning with particle size of pulverized coal: Examples from power plants burning Central Appalachian and Illinois basin coals

机译:煤粉粒度的宏观/微石版分型:以燃烧阿巴拉契亚中部和伊利诺伊州盆地煤的发电厂为例

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摘要

Pulverized coals from eleven power plants burning Central Appalachian coal blends and eight power plants burning Illinois Basin coal blends were studied in order to assess the petrographic nature of industrial-scale coal grinding. All coals were high volatile bituminous. Coals were wet screened at 100 (150 μ), 200 (75 μ), 325 (about 40 μ), and 500 (about 25 μ) mesh. Petrographic analysis of the whole coals and size fractions consisted of a combined maceral and microlithotype analysis. Microlithotype analysis, in particular, provides a reasonable approximation of the whole-particle composition at the scale of utility coal pulverization. In the size fractions, duroclarite, the most abundant trimaceral microlithotype, is most abundant in the coarsest fraction and least abundant in the finest fraction. Vitrite, the most abundant monomaceral microlithotype, exhibits the opposite trend. Duroclarite becomes more enriched in vitrinite towards the finer sizes. The partitioning of microlithotypes and the partitioning of macerals within the microlithotypes is indicative of the relative brittle nature of vitrite compared to the hard-to-grind trimaceral microlithotypes. Increased vitrinite in duroclarite is an indication that the microlithotype within the particular size fraction is more brittle than relatively vitrinite-depleted duroclarite in coarser fractions. The relative grindability of microlithotypes will, in turn, impact combustion efficiency.
机译:为了评估工业规模磨煤的岩石学性质,研究了来自11个燃烧阿巴拉契亚中部煤混合气的电厂和8个燃烧伊利诺伊州盆地煤混合气的电厂的粉煤。所有煤均为高挥发性沥青。将煤以100(150μ),200(75μ),325(约40μ)和500(约25μ)目进行湿筛。整个煤和粒度级分的岩相学分析由宏观和微石版型分析组成。特别地,微石型分析提供了实用煤粉化规模的全颗粒组成的合理近似值。在尺寸级分中,最丰富的三方微石型的硬硅镁石在最粗级分中最丰富,而在细级分中最少。黄铁矿是最丰富的单晶微石型,呈现相反的趋势。向更细的尺寸方面,硬铁矿中的富铝质变得更加富集。微石型的分配和微石型内的黄体的分配指示了与难以磨碎的三链微石型相比,玻璃体的相对脆性。硬硅藻土中镜质体含量的增加表明,特定粒度级分中的微石型比粗级分中相对贫钙质体的硬硅藻土更脆。微石版型的相对可磨性将反过来影响燃烧效率。

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