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首页> 外文期刊>Fuel Processing Technology >Characterization of porous structure of coal char from a single devolatilized coal particle: Coal combustion in a fluidized bed
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Characterization of porous structure of coal char from a single devolatilized coal particle: Coal combustion in a fluidized bed

机译:单个脱挥发分煤颗粒中煤焦多孔结构的表征:流化床中的煤燃烧

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The combustion characteristics of coal char are highly dependent on initial pore structure of devolatilized char as well as on the structural evolution during the combustion of char. The development of pore structure also throws light on the mechanism of the combustion process. In the present work evolution of pore structure of partially burnt coal char of Indian origin has been investigated experimentally in a batch-fluidized bed and analyzed. The BET surface area, micropore surface area and porosity of char at various levels of carbon burn-off have been determined. Experimental specific surface area has been found to agree well with theoretical prediction using random pore model. Modified random pore model is used to determine the active surface area. Char combustion mechanism based on shrinking unreacted core and shrinking reacted core models are delineated during the course of reaction at various bed temperatures. This is substantiated with the proportional representation of ash and carbon matrix in scanning electron microscope images. It is also concluded that in the present investigation the mean pore size is much smaller and hence the Knudsen diffusion predominates. Analysis based on similar experimental observations and models for pore structure evolution to investigate char combustion reaction regime has not been reported in literature.
机译:煤焦的燃烧特性高度依赖于脱挥发焦炭的初始孔结构以及焦炭燃烧过程中的结构演变。孔结构的发展也阐明了燃烧过程的机理。在目前的工作中,已在间歇流化床中对印度产的部分燃烧的煤焦的孔结构演变进行了实验研究并进行了分析。已经确定了在各种碳燃烧水平下的BET表面积,微孔表面积和炭的孔隙率。已经发现实验比表面积与使用随机孔模型的理论预测非常吻合。修改后的随机孔模型用于确定有效表面积。在反应过程中,不同床温下,描绘了基于未反应核收缩和反应核模型收缩的焦炭燃烧机理。这可以通过在扫描电子显微镜图像中灰分和碳基质的比例表示来证实。还得出结论,在本研究中,平均孔径要小得多,因此克努森扩散占主导地位。文献中尚未报道基于类似的实验观察结果和孔隙结构演化模型进行的炭燃烧反应机理研究。

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