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Characterization of M4 carbine rifle emissions with three ammunition types

机译:用三个弹药类型表征M4卡宾枪排放

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摘要

Muzzle emissions from firing an M4 carbine rifle in a semi-enclosed chamber were characterized for an array of compounds to provide quantitative data for future studies on potential inhalation exposure and rangeland contamination. Air emissions were characterized for particulate matter (PM) size distribution, composition, and morphology; carbon monoxide (CO); carbon dioxide (CO2); energetics; metals; poly cyclic aromatic hydrocarbons; and methane. Three types of ammunition were used: a "Legacy" (Vietnam era) round, the common M855 round (no longer fielded), and its variant, an M855 round with added potassium (K)-based salts to reduce muzzle flash. Average CO concentrations up to 1500 ppm significantly exceeded CO2 concentrations. Emitted particles were in the respirable size range with mass median diameters between 0.33 and 0.58 mu m. PM emissions were highest from the M855 salt-added ammunition, likely due to incomplete secondary combustion in the muzzle blast caused by scavenging of combustion radicals by the K salt. Copper (Cu) had the highest emitted metal concentration for all three round formulations, likely originating from the Cu jacket on the bullet. Based on a mass balance analysis of each round's formulation, lead (Pb) was completely emitted for all three round types. This work demonstrated methods for characterizing emissions from gun firing which can distinguish between round-specific effects and can be used to initiate studies of inhalation risk and environmental deposition. Published by Elsevier Ltd.
机译:从半封闭室中射击M4卡扣步枪的枪口排放的特征是一系列化合物,以提供对潜在吸入暴露和牧场污染的未来研究的定量数据。空气排放的特征在于颗粒物质(PM)尺寸分布,组成和形态;一氧化碳(CO);二氧化碳(CO2);精力充沛;金属;聚环芳烃;和甲烷。使用了三种类型的弹药:“遗留”(越南时代)圆形,常见的M855圆形(不再有效),其变体,一个M855圆形,加入钾(K)的盐,以减少枪口闪光。平均CO浓度高达1500ppm显着超过CO 2浓度。发射的颗粒在可吸入尺寸范围内,质量中值直径在0.33和0.58μm之间。 PM排放从M855盐添加的弹药中最高,可能由于枪口爆炸中的次孔爆炸中的不完全二次燃烧,这是由k盐的清除引起的。铜(Cu)对所有三个圆形配方具有最高的金属浓度,可能来自子弹上的Cu夹克。基于每轮配方的质量平衡分析,铅(PB)完全散列所有三种圆形类型。这项工作证明了从枪支射击中排放的方法,这可以区分圆形效果,可用于启动吸入风险和环境沉积的研究。 elsevier有限公司出版

著录项

  • 来源
    《Environmental Pollution》 |2019年第1期|112982.1-112982.10|共10页
  • 作者单位

    Univ Dayton Res Inst 300 Coll Pk Dayton OH 45469 USA;

    US EPA Off Res & Dev Natl Risk Management Res Lab E343 04 Res Triangle Pk NC 27711 USA;

    US EPA Off Res & Dev Natl Risk Management Res Lab E343 04 Res Triangle Pk NC 27711 USA;

    US Army Res Lab 2800 Powder Mill Rd Adelphi MD 20783 USA;

    US EPA Off Res & Dev Natl Risk Management Res Lab E343 04 Res Triangle Pk NC 27711 USA;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Emissions; Ammunition; Rifle; Carbon monoxide; Particulate matter; Metals;

    机译:排放;弹药;步枪;一氧化碳;颗粒物质;金属;

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