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使用基于钛(IV)的测试条和低成本硬件检测液体和蒸气中的过氧化氢。

Detection of Hydrogen Peroxide in Liquid and Vapors Using Titanium(IV)-Based Test Strips and Low-Cost Hardware.

机构信息

Department of Chemistry, Oklahoma State University, 107 Physical Sciences, Stillwater, OK 74078, USA.

Engineering, Physical Sciences, and Process Technology Division, Northern Oklahoma College, Stillwater, OK 74078, USA.

出版信息

Sensors (Basel). 2022 Sep 2;22(17):6635. doi: 10.3390/s22176635.

Abstract

Titanium(IV) solutions are known to detect hydrogen peroxide in solutions by a colorimetric method. Xplosafe's XploSens PS commercial titanium(IV)-based peroxide detection test strips are used to detect hydrogen peroxide in liquids. The use of these test strips as gas-phase detectors for peroxides was tested using low-cost hardware. The exposure of these strips to hydrogen peroxide liquid or gas leads to the development of an intense yellow color. For liquids, a digital single-lens reflex camera was used to quantify the color change using standardized solutions containing between 50 and 500 ppm peroxide by mass. Analysis of the images with color separation can provide a more quantitative determination than visual comparison to a color chart. For hydrogen peroxide gas, an inexpensive web camera and a tungsten lamp were used to measure the reflected light intensity as a function of exposure from a test strip held in a custom cell. First-order behavior in the color change with time was observed during the exposure to peroxide vapor over a range of peroxide concentrations from 2 and 30 ppm by volume. For a 1-min measurement, the gas-phase detection limit is estimated to be 1 ppm. A 0.01 ppm detection limit can be obtained with a 1-h exposure time. Titanium(IV)-based peroxide detection test strips are sensitive enough to work as a gas-phase hydrogen peroxide detector.

摘要

钛(IV)溶液通过比色法被公认为可以检测溶液中的过氧化氢。Xplosafe 的 XploSens PS 商业钛(IV)基过氧化物检测测试条用于检测液体中的过氧化氢。使用这些测试条作为过氧化物的气相探测器进行了测试,使用了低成本硬件。这些条带暴露于过氧化氢液体或气体中会导致强烈的黄色颜色发展。对于液体,使用数字单镜头反光相机通过使用含有 50 至 500ppm 过氧化物(按质量计)的标准溶液来量化颜色变化。通过颜色分离对图像进行分析可以比与颜色图表进行视觉比较提供更定量的测定。对于过氧化氢气体,使用廉价的网络摄像头和钨灯来测量反射光强度,该反射光强度作为暴露于保持在定制单元中的测试条的函数。在暴露于体积浓度为 2 至 30ppm 的过氧化物蒸气的过程中,观察到颜色随时间的变化呈一级行为。对于 1 分钟的测量,估计气体检测限为 1ppm。通过 1 小时的暴露时间可以获得 0.01ppm 的检测限。基于钛(IV)的过氧化物检测测试条足够灵敏,可以用作气相过氧化氢探测器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7537/9460035/0ca83ce86fa7/sensors-22-06635-g001.jpg

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