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Effects of environmental parameters on the chemical signature of landmines.

机译:环境参数对地雷化学特征的影响。

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The presence of buried landmines is an environmental problem in many parts of the world; strategies to detect and remove landmines are being developed; one of these strategies is the developing of chemical based sensors. Even when most landmines cases are made from plastic, small amounts of explosive may diffuse through the case (or through cracks), enter the soil and migrate to the surface. The spatial and temporal concentration distribution of chemicals released from a landmine at the soil surface is influenced by: the type of soil, environmental factors, water and gaseous phase mobility, molecular and mechanical diffusion, adsorption characteristics, water content, and compaction. In this work we measure the concentration of chemicals at the surface at different ambient conditions. Experiments are carried out using a series of soil tanks with controlled conditions such as: temperature, moisture content, relative humidity and radiation (UV and Visible). Gas Chromatography (GC-DECD) with Solid Phase Microextraction (SPME) and direct injection were used for the analysis of explosives. The results of the experiments will be used to provide validation for the simulation model describing the spectroscopic signature and its transport though soil. We have obtained the trends on the effect of the ambient conditions on the chemical signature. Of particular interest is the presence of several degradation compounds as time evolves.
机译:在世界许多地方,埋藏的地雷是一个环境问题。正在制定探测和清除地雷的战略;这些策略之一是开发基于化学的传感器。即使大多数地雷的外壳是由塑料制成的,少量炸药也可能通过外壳(或裂缝)扩散,进入土壤并迁移到地面。从地雷释放到土壤表面的化学物质的时空浓度分布受以下因素的影响:土壤类型,环境因素,水和气相迁移率,分子和机械扩散,吸附特性,水含量和压实度。在这项工作中,我们在不同的环境条件下测量表面化学物质的浓度。使用一系列土壤罐在受控条件下进行实验,例如温度,水分含量,相对湿度和辐射(紫外线和可见光)。采用固相微萃取(SPME)和直接进样的气相色谱(GC-DECD)分析炸药。实验的结果将用于验证描述光谱特征及其在土壤中运输的模拟模型的有效性。我们已经获得了环境条件对化学特征影响的趋势。随着时间的流逝,几种降解化合物的存在特别令人关注。

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