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Progress in waste utilization via thermal plasma

机译:通过热等离子体的废物利用进展

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摘要

As the world races toward its urban future, the quantity of wastes, one of the vital by-products of an enhancement in the standards of living, is exponentially rising. The treatment of wastes employing plasma is an upcoming area of research and is globally used for the simultaneous processing of diverse wastes coupled with the recovery of energy and materials. Ground-breaking and cost-effective thermal plasma technologies with high efficiencies are a prerequisite for the growth of this technology. This paper delivers an evaluation of the fundamentals such as the generation and characteristics of the thermal plasma along with the various types of wastes treatable by thermal plasma and the related issues. Furthermore, the authors discuss different types of advanced technologies as well as the material and energy recovery techniques and their present status worldwide, at lab-scale and industrial scale. The application of different thermal plasma technologies is discussed as a means to promote this technology into alternative applications, which require higher flexibility and greater efficiency. Mathematical modeling studies are also assessed with an objective to derive ideal conditions and permissible limits for the reactors and to test a variety of waste materials. A strategy to improve the feasibility and sustainability of waste utilization is via technological advancement and the minimization of environmental effects and process economics. This paper sheds light on diverse areas of waste utilization via thermal plasma as a potentially sustainable and environmentally friendly technology. (c) 2020 Elsevier Ltd. All rights reserved.
机译:随着世界对城市未来的竞争,浪费的数量是居住标准的重要副产品,是指数升高的。使用血浆的废物的处理是即将到来的研究领域,并且全球用于同时加工各种废物,加上能量和材料的回收。具有高效率的接地和经济高效的热等离子体技术是该技术增长的先决条件。本文提供了对热等离子体的产生和特征等基本面的评估,以及热等离子体可治疗的各种类型的废物和相关问题。此外,作者讨论了不同类型的先进技术以及实验室规模和工业规模的全球材料和能源恢复技术及其现状。讨论了不同热等离子体技术的应用作为将该技术促进到替代应用中的手段,这需要更高的灵活性和更高的效率。还评估了数学建模研究,目的是导出反应器的理想条件和允许的限制,并测试各种废料。改善废物利用可行性和可持续性的策略是通过技术进步和对环境影响和过程经济学的最大限度化。本文通过热等离子体作为潜在可持续和环保的技术,阐明了各种废物利用区域。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Progress in Energy and Combustion Science》 |2020年第11期|100873.1-100873.34|共34页
  • 作者单位

    Czech Acad Sci Inst Plasma Phys Vvi Za Slovankou 1782-3 Prague 18200 8 Czech Republic|Univ Chem & Technol Dept Power Engn Tech 5 Prague 16628 6 Czech Republic|Univ Ghent Dept Green Chem & Technol B-9000 Ghent Belgium;

    Czech Acad Sci Inst Plasma Phys Vvi Za Slovankou 1782-3 Prague 18200 8 Czech Republic;

    Univ Ghent Dept Appl Phys B-9000 Ghent Belgium|Natl Res Nucl Univ MEPHI Moscow Russia|Natl Res Univ Moscow Power Engn Inst Moscow Russia;

    Univ Chem & Technol Dept Power Engn Tech 5 Prague 16628 6 Czech Republic|Czech Acad Sci Inst Chem Proc Fundamentals Vvi Rozvojova 135 Prague 16502 6 Czech Republic;

    Czech Acad Sci Inst Plasma Phys Vvi Za Slovankou 1782-3 Prague 18200 8 Czech Republic;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy material recovery; Environmental impact; Modeling; Thermal plasma; Waste valorization;

    机译:能量和物质恢复;环境影响;建模;热等离子体;废物储存;

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