Near infrared inspection technology of bottled explosive liquid in airports

NIR News Pub Date : 2020-03-01 DOI:10.1177/0960336019889283
H. Itozaki
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引用次数: 3

Abstract

Near infrared inspection technology of bottled explosive liquid has been developed to be used in airports for anti-terrorism. Near infrared absorbance of 700 nm–1000 nm is used to inspect liquids in a bottle. Influence of bottle’s color can be avoided if the second derivative of absorbance at wavelength of more than 800 nm is used to inspect colored bottles. Suspension liquid such as milk can be inspected by reflected light. As various bottled liquids are carried into the airport by passengers, hundreds of bottled liquid such as beverages (soft and hard drinks), cosmetics, perfumes, medicines, shampoos, and so on were collected and their near infrared absorbance spectra were obtained to make a database of discrimination. Correlation coefficient is used to discriminate these liquids. And safe liquid or explosives was identified instantly. An ultrasonic pulse method was also applied to inspection of liquid in a metal can. Kumahira Co. Ltd developed a commercialized product. It was certified by the most reliable evaluation organization European Civil Aviation Conference. In 2019, more than 300 devices have been installed in Japanese airports for anti-terrorism, and some of them have been installed in Japanese Customs to inspect smuggling drugs. The liquid inspection technology can be applied not only in airports but also in many kinds of public places for the safety of public. Near infrared technology has large potential to be applied in more and more fields.
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机场瓶装爆炸液体近红外检测技术
研制了用于机场反恐的瓶装爆炸液体近红外检测技术。近红外吸光度为700nm - 1000nm,用于检测瓶内液体。采用波长大于800nm的吸光度二阶导数对有色瓶进行检测,可以避免对瓶子颜色的影响。像牛奶这样的悬浮液可以用反射光来检测。由于旅客携带的各种瓶装液体进入机场,我们收集了饮料(软饮料和软饮料)、化妆品、香水、药品、洗发水等数百种瓶装液体,获得了它们的近红外吸收光谱,建立了鉴别数据库。用相关系数来区分这些液体。安全液体或爆炸物立即被识别出来。并将超声脉冲法应用于金属罐内液体的检测。熊平株式会社开发出商业化产品。由最可靠的评估机构欧洲民航会议认证。2019年,日本机场安装了300多台用于反恐的设备,其中一些设备已安装在日本海关,用于检查走私毒品。液体检测技术不仅可以应用于机场,还可以应用于各种公共场所,以保障公众的安全。近红外技术在越来越多的领域具有巨大的应用潜力。
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Selected References DIARY Diary Meeting of the International Association of Spectral Imaging (IASIM-2024) Selected References
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