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Monitoring of Residential Air Quality by Formaldehyde Biochemical Gas Sensor for Indoor Public Health: High sensitive (sub-ppb) bio-sniffer for residential VOC assessment

机译:用于室内公共卫生的甲醛生化气体传感器监测住宅空气质量:住宅VOC评估的高敏感(子PPB)生物嗅探器

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An optical fiber biochemical gas sensor (bio-sniffer) for assessment of indoor formaldehyde was fabricated and tested. The bio-sniffer measures formaldehyde vapor as fluorescence of reduced nicotinamide adenine dinucleotide (NADH), which is the product of formaldehyde dehydrogenase (FALDH) reaction. Usually, an enzyme loses its specific activity in the gas phase. This makes biochemical gas monitoring difficult. We used a micro flow-cell with a FALDH immobilized membrane to prevent the FALDH from deactivation. An ultraviolet light emitting diode (UV-LED) with peak emission of 335nm was employed as an excitation light source. Emission of the UV-LED was introduced to the optode through an optical fiber and fluorescence of NADH was picked up coaxially at the optode. In order to improve the sensitivity, a photomultiplier tube was utilized as a photodetector. Consequently, continuous FA monitoring with biochemical method was successfully conducted with high sensitivity and high selectivity. A real-sample test was also carried out with the bio-sniffer. According to the results, it is expected to be useful in fast and convenient monitoring of indoor FA.
机译:制造和测试用于评估室内甲醛的光纤生物化气体传感器(BIO-SNIFFER)。生物嗅探器衡量甲醛蒸汽作为荧光的烟酰胺腺嘌呤二核苷酸(NADH),其是甲醛脱氢酶(FALDH)反应的产物。通常,酶在气相中失去其特异性活性。这使得生物化学气体监测变得困难。我们使用具有FALDH固定的膜的微流细胞,以防止FALDH取消激活。使用具有335nm的峰值发射的紫外发光二极管(UV-LED)作为激发光源。通过光纤将UV-LED的发射引入光学纤维,并且在光电码上同轴地拾取NADH的荧光。为了提高灵敏度,将光电倍增管用作光电探测器。因此,用高灵敏度和高选择性成功进行了生化方法的连续发育监测。还使用生物嗅探器进行真实样本测试。根据结果​​,预计在快速方便地监测室内FA的情况下有用。

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