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Safety Evaluation and Cause Investigation of the Fire in Various Solid Biomass Fuels and Organic Rubble Pile Using High Sensitivity Calorimeters

机译:高灵敏量热仪评估各种固体生物质燃料和有机碎石堆着火的安全性和原因

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摘要

Recently proposed various solid biomass fuels are reviewed from a safety aspect, especially concerning the hazard of spontaneous ignition. Various types of biomass materials are proposed for use as fuel, such as RDF (refuse derived fuel) and wood chips. These fuels have high energy and potential to cause fires, explosions, or other incidents. Japan experienced many incidents with biomass materials, such as wood chips, coal-wood mixture, and organic rubble produced from destroyed houses by the great earthquake and tsunami in March 2011, in Japan. Organic rubble includes various organic materials and sometimes causes fire, and it may be able to be used for fuel of power plants. However, it is very difficult to extinguish fires of biomass fuel piles in storage facilities. Here, current studies on heat generation for these materials and a proposed evaluation test method for these new developing materials in Japan are introduced, which is to use high sensitivity calorimeters such as C80, or TAM, and gas emission test. Additionally, cause investigation work for post-earthquake fires by organic rubble, conducted by the author, is introduced. High sensitivity calorimeters can detect small heat generation between room temperature and 80 ℃, due to fermentation or other causes. This heat generation sometimes initiated a real fire and produced some combustible gas, which may explode if fuel is stored inside silo or other indoor storage.
机译:从安全性的角度对最近提出的各种固体生物质燃料进行了审查,特别是关于自燃的危险。提出了各种类型的生物质材料用作燃料,例如RDF(垃圾衍生燃料)和木屑。这些燃料具有很高的能量,并有可能引起火灾,爆炸或其他事故。在2011年3月的日本大地震和海啸中,日本发生了许多生物质材料事故,例如木屑,煤木混合物和被毁房屋产生的有机瓦砾。有机瓦砾包括各种有机材料,有时会引起火灾,并且可以用作发电厂的燃料。然而,扑灭储存设施中的生物质燃料堆的火灾是非常困难的。在这里,介绍了有关这些材料的发热的最新研究以及在日本对这些新兴材料提出的评估测试方法,该方法将使用诸如C80或TAM之类的高灵敏度量热仪以及气体排放测试。此外,作者介绍了由有机瓦砾引起的地震后火灾的原因调查工作。高灵敏度的热量计可以检测由于发酵或其他原因而在室温至80℃之间产生的热量很小。这种热量的产生有时会引起真正的大火并产生一些可燃气体,如果将燃料存储在筒仓或其他室内存储器中,则可能会爆炸。

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  • 来源
    《Energy & fuels》 |2012年第sepaaocta期|p.5962-5967|共6页
  • 作者

    Hiroshi Koseki;

  • 作者单位

    National Research Institute of Fire and Disaster, 4-35-3 Jindaiji-higashi, Chofu, Tokyo, Japan 192-0023;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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