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Development of a novel hand-held toluene gas sensor: Possible use in the prevention and control of sick building syndrome

机译:新型手持式甲苯气体传感器的开发:可能用于预防和控制病态建筑综合症

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摘要

A novel hand-held toluene gas sensor has been developed. It can be utilized in the control and prevention of sick building syndrome. The sensor is based on the principle that toluene gas reacts with iodine pentoxide producing a brown coloured product, iodine. Iodine pentoxide is impregnated on a filter which is subsequently exposed to toluene gas for a duration of 30 min. The product is detected by measuring the intensity of reflected light at 460 nm using a photo diode and a light emitting diode housed in a hand-held photometer. The degree of colour change is proportional to the concentration of toluene gas. The relative standard deviation for the response (n velence 3) to colour change was <10.5percent proving this method to be reproducible. By using optimized conditions, we were able to detect 0.05 ppm toluene gas, lower than the 0.07 ppm guideline value for indoor toluene concentration set by World Health Organization. The technique is hardly affected by other common indoor gases, except for a possible interference by benzenoid aromatic hydrocarbons. This sensor is simple, specific, highly sensitive and is suitable for field operations.
机译:已经开发了新颖的手持式甲苯气体传感器。它可用于控制和预防病态建筑综合症。该传感器基于以下原理:甲苯气体与五氧化二碘反应生成棕色产物碘。将五氧化二碘浸渍在过滤器上,然后将其暴露于甲苯气体中30分钟。使用容纳在手持式光度计中的光电二极管和发光二极管,通过测量460 nm处的反射光强度来检测产品。颜色变化的程度与甲苯气体的浓度成正比。对颜色变化的响应(第3步)的相对标准偏差<10.5%,证明该方法是可重现的。通过使用优化条件,我们能够检测到0.05 ppm的甲苯气体,低于世界卫生组织设定的室内甲苯浓度的0.07 ppm指导值。该技术几乎不受其他常见室内气体的影响,但可能受到苯类芳香烃的干扰。该传感器简单,专用,高度灵敏,适用于现场操作。

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