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On-board monitoring of hazardous exhaust emissions in passenger cars (category M_1)

机译:车载监测乘用车中的有害废气排放(M_1类)

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A fibre-optic sensor for the monitoring of hazardous exhaust gases based on absorption in the ultra-violet region is described. The loss of light through a gas cell across the UV/VIS spectrum was utilised to determine the level of absorption for three of the exhaust gases present in an exhaust. The measured absorption specific to each of these test gases Nitrogen Dioxide (NO_2), Sulphur Dioxide (SO_2) and Nitric Oxide (NO) was used in a variation of the Beer-Lambert law to determine the absorption line intensities for each of the gases. Theoretical absorption line intensities for each of the exhaust gases compared favorably with our measured results. A Lab VIEW program was created and utilised to interrogate the highest absorbing wavelength for each of the gases and absorption recorded at these specific absorbing wavelength were then input along with our measured absorption line intensities into the Beer-Lambert law to determine the concentrations of each of the gases present in the test cell. In this manner the concentrations were calculated immediately and then output to the user eliminating the need for processing the data after testing. A lower detection level of 1ppm for both NO_2 and SO_2 and in the order of 26ppm for NO was achieved.
机译:描述了一种用于基于紫外线区域中的吸收来监测有害废气的光纤传感器。通过气室的UV / VIS光谱损失的光用于确定排气中存在的三种排气的吸收水平。在比尔-朗伯定律的一种变化形式中,使用了对每种测试气体各自测量的特定于二氧化氮(NO_2),二氧化硫(SO_2)和一氧化氮(NO)的吸收率,以确定每种气体的吸收线强度。每种废气的理论吸收线强度与我们的测量结果相比具有优势。创建了Lab VIEW程序,并将其用于询问每种气体的最高吸收波长,然后将在这些特定吸收波长下记录的吸收值与我们测得的吸收线强度一起输入比尔-朗伯定律,以确定每种气体的浓度。测试池中存在的气体。通过这种方式,可以立即计算出浓度,然后将其输出给用户,从而消除了测试后处理数据的需要。 NO_2和SO_2的检测水平较低,分别为1ppm,而NO的检测水平约为26ppm。

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