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DEVELOPMENT OF AN ON-SITE DETECTION METHOD FOR CHEMICAL AND BIOLOGICAL WARFARE AGENTS

机译:化学和生物武器代理商现场检测方法的开发

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We evaluated commercially available, portable, on-site equipment for chemical warfare agent detection (a gas detection tube, ion mobility spectrometer, surface acoustic wavelength detector, flame photometric detector, photoionization detector, Fourier-transformed infrared spectrometer and a gas chromatograph-mass spectrometer) using authentic, vaporized chemical-warfare agents from the standpoint of their qualitative detection characteristics, detection limits, response times, frequency of false alarms and residubility on the devices. False alarms and the strong adsorption of agents by the devices are typical drawbacks of such equipment. As a screening method for biological warfare agents, on-site methods using flow cytometry, bioluminescence assay, and lateral flow immunoassay were
机译:我们对用于化学战剂检测的商用便携式设备进行了评估(气体检测管,离子迁移谱仪,表面声波波长检测器,火焰光度检测器,光电离检测器,傅立叶变换红外光谱仪和气相色谱-质谱仪)从其定性检测特性,检测极限,响应时间,错误警报的频率和设备上的可复制性的角度出发,使用真实的汽化化学战剂。虚假警报和设备对试剂的强烈吸附是此类设备的典型缺点。作为生物战剂的筛选方法,使用流式细胞术,生物发光测定和侧向流免疫测定的现场方法是

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