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Selective detection of organophosphate nerve agents using microplasma device

机译:使用显微载体的有机磷神经剂选择性检测

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A direct current glow discharge microplasma source permits ambient ionization directly and can provide fast and accurate in situ detection combined with a spectrometer. In this study, a stable microplasma-based detector for nerve agent detection has been developed. The innovative concept of this new nerve agent detector is to detect two parts of the nerve agent components, the element phosphorus and the organic part, CH radicals, at the same time. Because there are two detection targets, our microplasma-based detector has enhanced selectivity for nerve agents. The reasons for this characteristic are studied through comparing the emission spectra of the microplasma and microwave plasma. We suggest that it's the very low gas temperature of our microplasma source that makes it possible to excite the nerve agent molecules without decomposition or splitting of the CH component. Thus the spectrometer can detect the emission lines of the element phosphorus and the organic CH radicals simultaneously. The influence of discharge current and gas flow rate on phosphorus signal intensity has been investigated. The emission intensity of phosphorus at 253.6 nm increases linearly with the discharge current in our tested range, but non-linearly with the gas flow rate. The detection curve has been calibrated. The emission intensity at 253.6 nm is in proportion to the concentration of the specimen triethyl phosphate (TEP) in the range from 41 ppm to 500 ppm by volume. The detection limit was calculated to be 5 ppm by volume. Small size, low power, low cost, and high selectivity make our device very suitable for nerve agent scanning in the field.
机译:直流发光放电微源极允许直接的环境电离,可以提供快速准确的原位检测与光谱仪相结合。在该研究中,已经开发出用于神经试剂检测的稳定的基于显微基质的检测器。这种新神经剂探测器的创新概念是在同一时间检测神经剂组分,元素磷和有机部件的两部分。因为存在两种检测靶标,所以我们的显微基质的检测器具有增强的神经剂选择性。通过比较显微载体和微波等离子体的发射光谱来研究该特征的原因。我们认为,它是我们的显微源极低的气体温度,使得可以在不分解或分裂CH组分的情况下激发神经试剂分子。因此,光谱仪可以同时检测元素磷和有机CH基团的发射线。研究了放电电流和气体流速对磷信号强度的影响。磷的发射强度在253.6nm处与我们测试范围内的放电电流线性增加,但与气流速率非线性地。检测曲线已被校准。在253.6nm处的发射强度与体积41ppm至500ppm的范围内的标本三乙酯(Tep)的浓度成比例。检测限计算为5ppm的体积。小尺寸,低功耗,低成本,高选择性使我们的装置非常适合在该领域的神经代理扫描。

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