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Electrostatic Ignition Hazards from Flexible Intermediate Bulk Containers (FIBCs) with Materials of Minimum Ignition Energy down to 0.12 milliJoules

机译:柔性中型散装容器(FIBC)的静电点火危险,最小点火能量低至0.12毫焦耳

摘要

The use of flexible intermediate bulk containers (FIBCs), or “big bags” as they are commonly known, is becoming widespread in a variety of industries, including chemical, pharmaceutical, and foodstuffs. Typically, FIBCs, roughly cubic in shape and constructed from woven polypropylene, are used to store and transport powdered or granular material in loads of between 300-1000 kg. In many cases, FIBCs are used in the vicinity of sensitive flammable atmospheres which may arise from the presence of dispersed combustible dusts or solvent vapors. Over the years, there have been a number of serious fires and explosions (particularly during the discharging of the bag contents) which have been attributed to static electricity. As a result, various “antistatic” FIBC designs have been produced containing intrinsic features aimed at minimizing the risk of electrostatic ignition. This paper presents the results of a rigorous assessment of a variety of FIBC designs with regard to electrostatic ignition hazard in flammable atmospheres of minimum ignition energy 0.12, 0.25, and 1.5 mJ. The study involved setting up a test rig to enable the FIBCs to be filled and emptied under controlled conditions of relative humidity. During these operations, the electrostatic activity in terms of surface potentials, electric field, and electrostatic discharge energy was monitored. Incendiary discharges were quantified by using a calibrated propane/oxygen/nitrogen gas probe. The findings of this paper indicate which of the designs can be safely used in various industrial processes without risk of ignition
机译:柔性中间散装容器(FIBC)或众所周知的“大袋子”的使用在化学,制药和食品等多种行业中正变得越来越普遍。通常,FIBC由聚丙烯编织材料制成,形状大致为立方体,用于存储和运输粉状或粒状材料,载荷在300-1000 kg之间。在许多情况下,FIBC用于敏感的易燃气体附近,这可能是由于存在分散的可燃粉尘或溶剂蒸气而引起的。多年以来,发生了许多起因于静电的严重火灾和爆炸(特别是在装袋内容物释放期间)。结果,产生了各种“抗静电” FIBC设计,这些设计包含旨在将静电着火风险降至最低的内在特征。本文介绍了对各种FIBC设计的严格评估结果,这些设计涉及在最小点火能量为0.12、0.25和1.5 mJ的易燃气氛中的静电点火危险。该研究涉及建立一个测试装置,以使FIBCs在受控的相对湿度条件下被填充和清空。在这些操作过程中,对表面活性,电场和静电放电能量方面的静电活动进行了监控。通过使用校准的丙烷/氧气/氮气探针对燃烧物的排放进行定量。本文的发现表明哪些设计可以安全地用于各种工业过程中而没有着火的风险

著录项

  • 作者

    Hearn G. L.;

  • 作者单位
  • 年度 2001
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  • 原文格式 PDF
  • 正文语种 en
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