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从表层土壤中Comp B颗粒有效洗脱黑索今(RDX)和三硝基甲苯(TNT)。

Effective elution of RDX and TNT from particles of Comp B in surface soil.

作者信息

Furey John S, Fredrickson Herbert L, Richmond Margaret J, Michel Michael

机构信息

Environmental Laboratory, U.S. Army Engineer Research and Development Center, 3909 Halls Ferry Road, Vicksburg, MS 39180-6199, USA.

出版信息

Chemosphere. 2008 Jan;70(7):1175-81. doi: 10.1016/j.chemosphere.2007.08.044. Epub 2007 Oct 29.

Abstract

During live fire training exercises, large amounts of explosives are consumed. Low order detonations of high explosive payloads result in the patchy dispersal of particles of high explosive formulations over large areas of firing range soils. Dissolution of explosives from explosive formulation particles into soil pore water is a controlling factor for transport, fate, and effects of explosive compounds. We developed an empirical method to evaluate soils based on functionally defined effective dissolution rates. An automated Accelerated Solvent Extractor was used to determine the effective elution rates under controlled conditions of RDX and TNT from soil columns containing particles of Comp B. Contrived soils containing selected soil geosorbants and reactive surfaces were used to quantitatively determine the importance of these materials. Natural soils from training ranges of various soil types were also evaluated. The effects of geosorbants on effective elution rates were compound- and sorbent-specific. TNT elution was less than that of RDX and was greatly slowed by humic acid. Iron and iron-bearing clays reduced the effective elution rates of both RDX and TNT. This empirical method is a useful tool for directly generating data on the potential for explosives to leach from firing range soils, to identify general bulk soil characteristics that can be used to predict the potential, and to identify means to engineer soil treatments to mitigate potential transport.

摘要

在实弹训练演习期间,会消耗大量炸药。高爆炸药有效载荷的低阶爆炸会导致高爆炸药配方颗粒在大面积靶场土壤上呈斑片状散布。炸药从炸药配方颗粒溶解到土壤孔隙水中是炸药化合物迁移、归宿和影响的一个控制因素。我们开发了一种基于功能定义的有效溶解速率来评估土壤的经验方法。使用自动加速溶剂萃取器在受控条件下测定从含有B型炸药颗粒的土壤柱中RDX和TNT的有效洗脱速率。使用含有选定土壤地质吸附剂和反应性表面的人工土壤来定量确定这些材料的重要性。还评估了来自各种土壤类型训练靶场的天然土壤。地质吸附剂对有效洗脱速率的影响因化合物和吸附剂而异。TNT的洗脱量低于RDX,并且腐殖酸使其洗脱大大减缓。铁和含铁粘土降低了RDX和TNT的有效洗脱速率。这种经验方法是一种有用的工具,可直接生成关于炸药从靶场土壤中浸出潜力的数据,识别可用于预测潜力并确定设计土壤处理方法以减轻潜在迁移的一般土壤总体特征。

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