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An initial study on feasible treatment of Serbian lignite through utilization of low-rank coal upgrading technologies

机译:利用低等煤提质技术可行处理塞尔维亚褐煤的初步研究

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Despite benefiting from vast fuel reserves, combustion of low-rank coals is commonly characterized by low thermal efficiency and high pollutant emissions, partly due to high moisture content of the coals in question. Thus, removal of moisture from low-rank coals is deemed an important quality upgrading method. The paper provides an overview of the current status of low-rank coal upgrading technologies, particularly with respect to utilization of drying and dewatering procedures. In order to examine the influence of relevant parameters on the moisture removal process, a model of convective coal drying in a packed, as well as in a fluid bed combustion arrangement, is developed and presented. Product-specific data (intraparticle mass transfer, gas-solid moisture equilibrium) related to the coal variety addressed herein (lignite) are obtained through preliminary investigations. Effective thermal conductivity of the packed bed as defined by Zehner/Bauer/Schlunder is used to define heat transfer mechanisms occurring in the packed bed. Similar two-phase fluidization model has been validated for different types of biomaterials. (C) 2014 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:尽管受益于丰富的燃料储备,低阶煤的燃烧通常具有热效率低和污染物排放高的特点,部分原因是所讨论的煤中水分含量高。因此,从低阶煤中去除水分被认为是一种重要的质量提升方法。本文概述了低级煤提质技术的现状,特别是在利用干燥和脱水程序方面。为了检查相关参数对水分去除过程的影响,开发并提出了在包装以及流化床燃烧装置中对流煤干燥的模型。通过初步研究可获得与本文所述的煤炭品种(褐煤)相关的特定产品数据(颗粒内质量传递,气固水分平衡)。 Zehner / Bauer / Schlunder定义的填充床的有效导热系数用于定义填充床中发生的传热机制。已针对不同类型的生物材料验证了类似的两相流化模型。 (C)2014化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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