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Optical parametric oscillator based detection of hydrogen cyanide for bio-medical applications

机译:用于生物医学应用的基于光学参量振荡器的氰化氢检测

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There is an increasing interest in the development of sensitive and selective methods to detect hydrogen cyanide (HCN) from biological samples [1,2]. Several studies have been conducted with different types of matrices, such as water, soil, air, exhaled breath and food. Different methods have been used to monitor HCN; however, most of them are complex and involve a large amount of manipulations of samples or the use of solvents. Additionally, they feature slow response time (in the order of minutes) and therefore hardly any continuous gas monitoring over days or weeks can be performed. In most cases the reported detection limit is in the part-per-million volume (ppmv) mixing range, which is not sufficient to perform trace emission experiments on small amounts of biological samples. Thus, the development of more sensitive methods able of measuring ppbv (parts-per-billion volume) level of HCN, becomes very motivated.
机译:人们越来越需要开发灵敏和选择性的方法来检测生物样品中的氰化氢(HCN)[1,2]。已经对不同类型的基质(例如水,土壤,空气,呼气和食物)进行了多项研究。已经使用了不同的方法来监视HCN。然而,它们中的大多数是复杂的,并且涉及大量的样品处理或溶剂的使用。此外,它们的响应时间很短(几分钟),因此几乎无法在几天或几周内进行任何连续的气体监测。在大多数情况下,所报告的检测极限在百万分之几的体积(ppmv)混合范围内,不足以对少量生物样品进行痕量发射实验。因此,开发能够测量HCN ppbv(十亿分之几)水平的更灵敏的方法变得非常积极。

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