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Monitoring of biological odour filtration in closed environments with olfactometry and an electronic nose

机译:使用嗅觉仪和电子鼻在封闭环境中监测生物气味过滤

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摘要

Air treatment with a compact biological membrane filter, and air quality monitoring with an electronic nose were tested in the laboratory on air from a cage containing six mice. Additional analyses of air to and from the filter were performed using olfactometry and ammonia and hydrogen sulphide gas detection tubes. The biological air filter is a module containing biofilm-coated membrane fibres that separate a closed liquid loop from a gas phase. Odour compounds and oxygen diffuse through the membranes from the gas phase to the biofilm, where they are degraded to carbon dioxide and water. The prototype "ENOBE" electronic nose is based on an array of eight thickness shear mode resonators (TSMR), also known in the literature as quartz microbalance sensors. The chemical sensitivity is given by molecular films of metalloporphyrins and similar compounds. Chemical interaction of compounds in the air with the vibrating sensors induces a frequency change of the vibration that can be measured as a signal. The air from the mouse cage had a strong odour (3490 OUE/m(3)). The biological membrane filter performed well, achieving over 80% odour and ammonia reduction. The electronic nose signal could be correlated with the inlet and outlet air-quality of the biological filter, making it a promising method for monitoring air quality in closed environments.
机译:在实验室中,用装有六只老鼠的笼子对空气进行了测试,测试了紧凑型生物膜过滤器的空气处理和电子鼻的空气质量监测。使用嗅觉仪以及氨和硫化氢气体检测管对进出过滤器的空气进行了其他分析。生物空气过滤器是一个模块,其中包含生物膜覆盖的膜纤维,该膜纤维将封闭的液体回路与气相分开。气味化合物和氧气通过膜从气相扩散到生物膜,在生物膜中它们被降解为二氧化碳和水。原型“ ENOBE”电子鼻基于八个厚度剪切模式谐振器(TSMR)的阵列,该谐振器在文献中也称为石英微量天平传感器。金属卟啉和类似化合物的分子膜给出了化学敏感性。空气中化合物与振动传感器的化学相互作用会引起振动的频率变化,可以将其测量为信号。鼠标笼中的空气有强烈的气味(3490 OUE / m(3))。生物膜过滤器表现良好,实现了80%以上的气味和氨气减少。电子鼻信号可以与生物过滤器的入口和出口空气质量相关,这使其成为一种在封闭环境中监测空气质量的有前途的方法。

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