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Absolute and relative emissions analysis in practical combustion systems-effect of water vapor condensation

机译:实际燃烧系统中的绝对和相对排放分析-水蒸气冷凝的影响

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摘要

Accurate knowledge of the absolute combustion gas composition is necessary in the automotive, aircraft, processing, heating and air conditioning industries where emissions reduction is a major concern. Those industries use a variety of sensor technologies. Many of these sensors are used to analyze the gas by pumping a sample through a system of tubes to reach a remote sensor location. An inherent characteristic with this type of sampling strategy is that the mixture state changes as the sample is drawn towards the sensor. Specifically, temperature and humidity changes can be significant, resulting in a very different gas mixture at the sensor interface compared with the in situ location (water vapor dilution effect). Consequently, the gas concentrations obtained from remotely sampled gas analyzers can be significantly different than in situ values. In this study, inherent errors associated with sampled combustion gas concentration measurements are explored, and a correction methodology is presented to determine the absolute gas composition from remotely measured gas species concentrations. For in situ (wet) measurements a heated zirconium dioxide (ZrO2) oxygen sensor (Bosch LSU 4.9) is used to measure the absolute oxygen concentration. This is used to correct the remotely sampled (dry) measurements taken with an electrochemical sensor within the remote analyzer (Testo 330-2LL). In this study, such a correction is experimentally validated for a specified concentration of carbon monoxide (5020 ppmv).
机译:在汽车,飞机,加工,供暖和空调行业中,必须精确了解绝对燃烧气体的组成,在这些行业中,减排是一个主要问题。这些行业使用各种传感器技术。这些传感器中的许多用于通过将样品泵送通过管道系统到达远程传感器位置来分析气体。这种采样策略的固有特征是,随着样品被吸向传感器,混合物的状态会发生变化。具体而言,温度和湿度的变化可能非常明显,与原位相比,传感器界面处的气体混合物非常不同(水蒸气稀释效应)。因此,从远程采样的气体分析仪获得的气体浓度可能与原位值明显不同。在这项研究中,探索了与采样的燃烧气体浓度测量相关的固有误差,并提出了一种校正方法,可从遥测的气体种类浓度中确定绝对气体成分。对于原位(湿法)测量,使用加热的二氧化锆(ZrO2)氧传感器(Bosch LSU 4.9)来测量绝对氧浓度。这用于校正在远程分析仪(Testo 330-2LL)内使用电化学传感器进行的远程采样(干燥)测量。在这项研究中,这种校正通过指定浓度的一氧化碳(5020 ppmv)进行了实验验证。

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