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Production and Characterization of Coal-Biomass Briquettes.

机译:煤生物质团块的生产与表征。

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摘要

Roll press briquetting of coal-biomass mixtures presents a significant opportunity to address feedstock challenges associated with co-utilization of coal and biomass in existing coal-fired facilities. However, several technical and economic barriers require further investigation prior to industrial utilization of coal-biomass briquettes. The scientific contributions presented in this dissertation are intended to address the most critical technical challenges pertaining to coal-biomass briquette feedstocks. As with any product of an agglomeration process, the primary technical challenge regarding coal-biomass briquettes is achieving and maintaining a high level of quality from production to utilization. Several laboratory-scale research investigations were conducted to address this challenge. The first study was conducted to identify, develop and refine methods to characterize the most important physical properties indicative of coal-biomass briquette quality. The outcome of this work is a set of recommendations for novel and refined methods to characterize important coal-biomass briquette properties. The second study was conducted to develop a novel method to identify the optimum water content of coal-biomass blends prior to briquette production. As a result of this study, the Briquette Proctor Test was developed to minimize the time and materials required to identify the optimum water content that corresponds to maximum quality of coal-biomass briquettes. The third study was conducted to evaluate the influence of feedstock variables, additive variables, and roll press operating parameters in the production of coal-biomass briquettes from various coal and biomass types. From this study, the influence of each parameter on the quality of briquettes was determined and optimum conditions were identified for a variety of coal-biomass mixtures. The fourth and final study was conducted to develop and evaluate methods to improve the water resistance of coal-biomass briquettes using wood-derived chemicals. Using these chemicals, the novel coating method developed in this study significantly improved the water resistance and weathered durability of coal-biomass briquettes.
机译:辊压煤-生物质混合物压块为解决与现有燃煤设施共同利用煤和生物质相关的原料挑战提供了重要机会。但是,在煤生物质煤球的工业利用之前,需要进一步研究一些技术和经济障碍。本文提出的科学贡献旨在解决与煤生物质煤饼原料有关的最关键的技术挑战。与任何附聚过程的产品一样,煤-生物质煤球的主要技术挑战是实现并保持从生产到使用的高质量水平。为了应对这一挑战,进行了几次实验室规模的研究调查。进行了第一项研究,以鉴定,开发和改进表征煤生物质团块质量最重要物理特性的方法。这项工作的结果是提出了一套新颖和完善的方法建议,以表征重要的煤-生物质煤球性能。进行了第二项研究,以开发一种新颖的方法,以在煤饼生产之前确定煤-生物质混合物的最佳含水量。这项研究的结果是,开发了煤球Proctor测试,以最大程度地减少识别与煤生物质煤球最高质量相对应的最佳含水量所需的时间和材料。进行了第三项研究,以评估原料变量,添加剂变量和辊压机操作参数对各种煤和生物质类型的煤生物质团块生产的影响。通过这项研究,确定了每个参数对煤球质量的影响,并确定了各种煤-生物质混合物的最佳条件。进行了第四项也是最后一项研究,以开发和评估使用源自木材的化学物质来改善煤生物质团块的耐水性的方法。使用这些化学物质,本研究开发的新型涂层方法显着改善了煤生物质团块的耐水性和耐候性。

著录项

  • 作者

    Dohm, Erich David.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Mining.;Engineering General.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 589 p.
  • 总页数 589
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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