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Assessment of Explosion Hazards Associated With Nano-Powders

机译:评估与纳米粉有关的爆炸危害

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Nano-powders are composed of particles in size range from about 1 to 100 nano-metres (nm). The growing demand for nano-powders arises from the change in physical, chemical and electrical properties exhibited by such particles when their size falls below 100 nm. Along with the increasing production and use of Nano scale particles, there has been a growing concern over the impact of this new technology on health, safety and environment. This has almost exclusively concentrated on the potential health hazards of nano-powders. One potential hazard that appears to have received little attention to date is their explosivity. Explosive dust clouds can be generated from most organic materials, many metals and even some non-metallic inorganic materials. Dust explosions involving particle sizes ranging from a few microns to hundreds of microns, there is a need for these particles to be extensively studied. This work involves computationally modelling the explosion, and investigation of critical parameters that can enhance the severity of the explosion. These parameters include but are not limited to effect of particle size, dust concentration and composition, ignition strength, degree of dust dispersion, explosion characteristics of nano-particles, operating conditions. Further, the work involved in this paper looks at the impact onto the environment by explosion of such nano-powders. The possibility of dust generation accumulation and explosion in various areas of the facility are investigated. A checklist for adequacy of existing safety measures is prepared, and requirement for additional safeguards is studied, in order to avoid catastrophic effects.
机译:纳米粉末由尺寸范围为约1至100纳米米(NM)的颗粒组成。当其尺寸低于100nm时,这种颗粒表现出的物理,化学和电学的变化,产生对纳米粉的需求。随着纳米规模颗粒的生产和使用不断增加,对这项新技术对健康,安全和环境的影响,越来越关注。这几乎完全集中在纳米粉末的潜在健康危害。一个似乎迄今为止收到的潜在危险是他们的爆炸性。爆炸性的尘埃云可以从大多数有机材料产生,许多金属甚至一些非金属无机材料。涉及颗粒尺寸的灰尘爆炸从几微米到数百微米,需要广泛研究这些颗粒。这项工作涉及计算模拟爆炸,并调查临界参数,可以增强爆炸的严重程度。这些参数包括但不限于粒度,粉尘浓度和组成,点火强度,粉尘分散程度,纳米颗粒的爆炸特性,操作条件的影响。此外,本文所涉及的作品通过这种纳米粉末爆炸来看待对环境的影响。研究了设施各个区域的灰尘产生积聚和爆炸的可能性。准备了现有安全措施充分性的清单,研究了额外保障的要求,以避免灾难性的影响。

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