Taylor Susan, Hewitt Alan, Lever James, Hayes Charlotte, Perovich Laura, Thorne Phil, Daghlian Chuck
Cold Regions Research & Eng. Lab., CRREL, Department of the Army Corps of Engineers, Engineer Research and Development Center, 72 Lyme Road, Hanover, NH 03766-1290, USA.
Chemosphere. 2004 Apr;55(3):357-67. doi: 10.1016/j.chemosphere.2003.11.031.
To achieve sustainable range management and avoid or minimize environmental contamination, the Army needs to know the amount of explosives deposited on ranges from different munitions and how these are degraded and transported under different geological and climatic conditions. The physical form of the deposited explosives has a bearing on this problem, yet the shapes and size distributions of the explosive particles remaining after detonations are not known. We collected residues from 8 high-order and 6 low-order non-tactical detonations of TNT-filled 155-mm rounds. We found significant variation in the amount of TNT scattered from the high-order detonations, ranging from 0.00001 to 2% of the TNT in the original shell. All low-order detonations scattered percent-level amounts of TNT. We imaged thousands of TNT particles and determined the size, mass and surface-area distributions of particles collected from one high-order and one low-order detonation. For the high-order detonation, particles smaller than 1 mm contribute most of the mass and surface area of the TNT scattered. For the low-order detonation, most of the scattered TNT mass was in the form of un-heated, centimeter-sized pieces whereas most of the surface area was again from particles smaller than 1 mm. We also observed that the large pieces of TNT disintegrate readily, giving rise to many smaller particles that can quickly dissolve. We suggest picking up the large pieces of TNT before they disintegrate to become point sources of contamination.
为实现可持续的靶场管理并避免或尽量减少环境污染,陆军需要了解不同弹药在靶场上沉积的炸药量,以及这些炸药在不同地质和气候条件下如何降解和迁移。沉积炸药的物理形态与这个问题相关,但爆炸后残留的炸药颗粒的形状和尺寸分布尚不清楚。我们从8次TNT填充的155毫米炮弹的高爆和6次低爆非战术性爆炸中收集了残留物。我们发现高爆中TNT散落量有显著差异,范围从原始炮弹中TNT的0.00001%到2%。所有低爆散落的TNT量为百分之几的水平。我们对数千个TNT颗粒进行了成像,并确定了从一次高爆和一次低爆中收集的颗粒的尺寸、质量和表面积分布。对于高爆,小于1毫米的颗粒贡献了散落TNT的大部分质量和表面积。对于低爆,大部分散落的TNT质量以未加热的厘米大小碎片的形式存在,而大部分表面积再次来自小于1毫米的颗粒。我们还观察到,大块TNT很容易分解,产生许多能迅速溶解的较小颗粒。我们建议在大块TNT分解成为污染点源之前将其捡起。