首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Depleted uranium dust from fired munitions: physical, chemical and biological properties.
【24h】

Depleted uranium dust from fired munitions: physical, chemical and biological properties.

机译:弹药耗尽的铀尘:物理,化学和生物特性。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This paper reports physical, chemical and biological analyses of samples of dust resulting from munitions containing depleted uranium (DU) that had been live-fired and had impacted an armored target. Mass spectroscopic analysis indicated that the average atom% of U was 0.198 +/- 0.10, consistent with depleted uranium. Other major elements present were iron, aluminum, and silicon. About 47% of the total mass was particles with diameters <300 microm, of which about 14% was <10 microm. X-ray diffraction analysis indicated that the uranium was present in the sample as uranium oxides-mainly U3O7 (47%), U3O8 (44%) and UO2 (9%). Depleted uranium dust, instilled into the lungs or implanted into the muscle of rats, contained a rapidly soluble uranium component and a more slowly soluble uranium component. The fraction that underwent dissolution in 7 d declined exponentially with increasing initial burden. At the lower lung burdens tested (<15 microg DU dust/lung) about 14% of the uranium appeared in urine within7 d. At the higher lung burdens tested (~80-200 microg DU dust/lung) about 5% of the DU appeared in urine within 7 d. In both cases about 50% of that total appeared in urine within the first day. DU implanted in muscle similarly showed that about half of the total excreted within 7 d appeared in the first day. At the lower muscle burdens tested (<15 microg DU dust/injection site) about 9% was solubilized within 7 d. At muscle burdens >35 microg DU dust/injection site about 2% appeared in urine within 7 d. Natural uranium (NU) ore dust was instilled into rat lungs for comparison. The fraction dissolving in lung showed a pattern of exponential decline with increasing initial burden similar to DU. However, the decline was less steep, with about 14% appearing in urine for lung burdens up to about 200 microg NU dust/lung and 5% at lung burdens >1,100 microg NU dust/lung. NU also showed both a fast and a more slowly dissolving component. At the higher lung burdens of both DU and NU that showed lowered urine excretion rates, histological evidence of kidney damage was seen. Kidney damage was not seen with the muscle burdens tested. DU dust produced kidney damage at lower lung burdens and lower urine uranium levels than NU dust, suggesting that other toxic metals in DU dust may contribute to the damage.
机译:本文报告了对含有贫铀弹药的实弹射击产生的尘埃样品的物理,化学和生物学分析,这些铀已经进行了实弹射击并影响了装甲目标。质谱分析表明,U的平均原子%为0.198 +/- 0.10,与贫铀一致。存在的其他主要元素是铁,铝和硅。总质量中约47%是直径<300微米的颗粒,其中约14%是<10微米。 X射线衍射分析表明,样品中的铀以氧化铀的形式存在,主要是U3O7(47%),U3O8(44%)和UO2(9%)。注入肺或植入大鼠肌肉的贫铀尘埃包含快速溶解的铀成分和溶解度较慢的铀成分。随着初始负担的增加,在7天内溶解的比例呈指数下降。在较低的肺负荷(<15微克DU尘/肺)下,在7天内尿中约有14%的铀出现。在较高的肺负荷(约80-200微克DU粉尘/肺)下,约5%的DU在7天内出现在尿液中。在这两种情况下,第一天的尿液中就有大约50%出现在尿液中。植入肌肉的DU同样显示,在7天之内排泄的总量中大约有一半是在第一天出现的。在测试的较低肌肉负荷(<15 microg DU灰尘/注射部位)下,约7%在7天内溶解。在肌肉负荷> 35 microg DU灰尘/注射部位的情况下,在7天内尿液中约有2%出现在尿液中。将天然铀(NU)矿粉滴入大鼠肺进行比较。与DU相似,溶解在肺中的馏分呈指数下降的模式,且初始负担增加。然而,下降幅度不大,在肺部负担高达200微克NU粉尘/肺时,尿液中出现约14%,而在肺部负荷大于1100微克NU粉尘/肺中出现5%。 NU还显示出快速溶解和缓慢溶解的成分。在DU和NU的较高肺负荷显示尿排泄率降低的情况下,可以看到肾脏损害的组织学证据。经测试的肌肉负担未见肾脏损害。与NU尘相比,DU尘在较低的肺部负担和较低的尿铀水平下会产生肾脏损害,这表明DU尘中的其他有毒金属可能是造成这种损害的原因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号