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Fragmentation and Distribution of Lead Following Firing into Various Types of Range Soils

机译:烧制成各类范围土壤后铅的碎片和分布

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The extent of bullet fragmentation, among other factors, affects the formation of mobile metal species on small arms firing ranges. Impact fragmentation produces an increase in the surface area to mass ratio of the metal alloys in the soil. This study examined the results of this increase in six soil types. Larger percentages of the average mass of metal particulates passing through a 1.68 mm sieve were observed for rocky and sandy soils than for softer, less compressible soils. Soil particle size separation by wet sieve analysis demonstrated that <1.8% of the total amount of lead introduced by ammunition was present in the <0.45 micron (soluble) size fraction. Bullet fragmentation patterns indicate that fragmentation at a firing distance of 25 m is greater than that at 98.5 m. The particulate nature of metals, such as lead, results in extensive sample heterogeneity and a consequent broad range of metal concentrations.
机译:在其他因素中,子弹碎片的程度影响了在小武器烧制范围内的移动金属物种的形成。冲击碎片产生的表面积增加到土壤中金属合金的质量比。本研究检测了六种土壤类型增加的结果。对于岩石和含有1.68mm筛的较大百分比,用于岩石和含有1.68mm筛子的含量,而不是更柔软,不可压缩的土壤。通过湿筛分分析分离土壤粒度分析表明,通过弹药引入的铅总量的<1.8%存在于<0.45微米(可溶)尺寸的级分中。子弹碎片模式表明,烧制距离为25μm的碎片大于98.5米的碎片。金属的颗粒性质,例如铅,导致具有广泛的样品异质性和随之而来的宽范围的金属浓度。

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