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Techno-economic assessment of turning gasification-based waste char into energy: A case study in South-Tyrol

机译:技术经济评估转向气化垃圾屠宰能源:南蒂罗尔的案例研究

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摘要

In the South-Tyrol region (Italy), 46 gasifiers are currently operating and €200,000 are annually paid to dispose of as a waste 1300 tons of char. Therefore, there is a considerable interest in finding alternatives for the valorization of this solid by-product. The aim of this work is to assess the potential of char as energy source and to compare two scenarios. The first scenario considers the possibility of exploiting char in a dedicated burner integrated in the gasification plant. The second scenario assumes that all the char is collected from South-Tyrol and co-fired with biomass in an existing combustion-ORC plant. An economic analysis was performed evaluating the discounted payback time and both scenarios were modeled using Aspen Plus®. The results reveal that substantial savings in the operating costs of the plants can be achieved. In the first scenario the owners of the gasification plants could save from 50% to 94% of the char disposal costs with a payback time ranging between 3 and 7 years. In the second scenario, the owner of the plant could save approximately €235 k per year with a payback time of approximately 7 years. The present study provides a basis for further techno-economic studies on char combustion. The results can be helpful for the owners of the gasification plants in determining the most cost-effective way to dispose char and to avoid disposing it of as a waste. Furthermore, it is demonstrated how char could be used as a renewable fuel, with better performance than raw biomass.
机译:在南蒂罗尔地区(意大利),目前有46个煤气机器,每年都有200,000欧元支付作为垃圾1300吨的垃圾。因此,对寻找该固体副产物的算子的替代方案具有相当大的兴趣。这项工作的目的是评估Char作为能源的潜力,并比较两种情况。第一个情景考虑了在集成在气化厂中的专用燃烧器中利用Char的可能性。第二种情况假设所有炭均在南蒂罗尔收集,并在现有的燃烧 - 兽厂中与生物量共用。执行经济分析评估折扣投资回收效时间,两种情况都使用AspenPlus®建模。结果表明,可以实现植物运营成本的大幅节省。在第一次场景中,气化厂的所有者可以节省50%至94%的Char处理成本,回报率在3到7年之间。在第二个方案中,工厂的所有者每年可以节省约235千克,回报返还时间约为7年。本研究为进一步的技术经济研究提供了关于炭燃烧的基础。结果对气化工厂的所有者有所帮助地确定最具成本效益的方法,以避免将其作为浪费处理。此外,证明了如何用作可再生燃料,而性能优于原料生物量。

著录项

  • 来源
    《Waste Management》 |2020年第3期|550-559|共10页
  • 作者单位

    Faculty of Science and Technology Free University of Bolzano piazza Universita 5 Bolzano 39100 Italy;

    Department of Chemical and Process Engineering University of Strathclyde James Weir Building JW405g 75 Montrose Street Glasgow G1 1XJ UK;

    Faculty of Science and Technology Free University of Bolzano piazza Universita 5 Bolzano 39100 Italy;

    Faculty of Science and Technology Free University of Bolzano piazza Universita 5 Bolzano 39100 Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Char; Waste; Gasification; Combustion; Economic analysis; System model;

    机译:char浪费;气化;燃烧;经济分析;系统模型;

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