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Detection and Classification Characteristics of Arrays of Carbon Black/Organic Polymer Composite Chemiresistive Vapor Detectors for the Nerve Agent Simulants Dimethylmethylphosphonate and Diisopropylmethylphosponate

机译:神经药模拟物二甲基甲基膦酸酯和二异丙基甲基膦酸酯的炭黑/有机聚合物复合化学阻性蒸气检测器阵列的检测和分类特性

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Arrays of conducting polymer composite vapor detectors have been evaluated for performance in the presence of the nerve agent simulants dimethylmethylphosphonate (DMMP) and diisopropylmethylphosponate (DIMP). Limits of detection for DMMP on unoptimized carbon black/organic polymer composite vapor detectors in laboratory air were estimated to be 0.047-0.24 mg m~(-3). These values are lower than the EC_(50) value (where EC_(50) is the airborne concentration sufficient to induce severe effects in 50% of those exposed for 30 min) for the nerve agents sarin (methylphosphonofluoridic acid, 1-methylethyl ester) and soman (methylphosphonofluoridic acid, 1,2,2-trimethylpropyl ester), which has been established as ~0.8 mg m~(-3). Arrays of these vapor detectors were easily able to resolve signatures due to exposures to DMMP from those due to DIMP or due to a variety of other test analytes (including water, methanol, benzene, toluene, diesel fuel, lighter fluid, vinegar, and tetrahydrofuran) in a laboratory air background. In addition, DMMP at 27 mg m~(-3) could be detected and differentiated from the signatures of the other test analytes in the presence of backgrounds of potential interferences, including water, methanol, benzene, toluene, diesel fuel, lighter fluid, vinegar, and tetrahydrofuran, even when these interferents were present in much higher concentrations than that of the DMMP or DIMP being detected.
机译:已经在神经刺激剂模拟物二甲基甲基膦酸酯(DMMP)和二异丙基甲基膦酸酯(DIMP)的存在下评估了导电聚合物复合蒸汽探测器的性能。在实验室空气中未优化的炭黑/有机聚合物复合蒸气检测器上对DMMP的检出限估计为0.047-0.24 mg m〜(-3)。这些值低于神经毒药沙林(甲基磷酸氢氟酸,1-甲基乙基酯)的EC_(50)值(其中EC_(50)是足以引起50%暴露30分钟的严重影响的空气传播浓度)的空气传播浓度。梭曼(甲基膦酰基氟酸1,2,2-三甲基丙酯),已确定为〜0.8 mg m〜(-3)。由于DIMP暴露于DMMP或多种其他测试分析物(包括水,甲醇,苯,甲苯,柴油,较轻的液体,醋和四氢呋喃),这些蒸汽检测器的阵列很容易分辨出由于DMMP暴露而引起的特征。 )在实验室空气背景中。另外,在存在潜在干扰的背景下,包括水,甲醇,苯,甲苯,柴油,较轻的流体,醋和四氢呋喃,即使这些干扰物的浓度比所检测到的DMMP或DIMP的浓度高得多。

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