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Multiparametric methane sensor for environmental monitoring

机译:用于环境监测的多丙烷甲烷传感器

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Today, methane sensors find applications mostly in safety alarm installations, gas parameters detection and air pollution classification. Such sensors and sensors elements exists for industry and home use. Under development area of methane sensors application is dedicated to ground gases monitoring. Proper monitoring of soil gases requires reliable and maintenance-free semi-constant and longtime examination at relatively low cost of equipment. The sensors for soil monitoring have to work on soil probe. Therefore, sensor is exposed to environment conditions, as a wide range of temperatures and a full scale of humidity changes, as well as rain, snow and wind, that are not specified for classical methane sensors. Development of such sensor is presented in this paper. The presented sensor construction consists of five commercial non dispersive infra-red (NDIR) methane sensing units, a set of temperature and humidity sensing units, a gas chamber equipped with a micro-fan, automated gas valves and also a microcontroller that controls the measuring procedure. The electronics part of sensor was installed into customized 3D printed housing equipped with self-developed gas valves. The main development of proposed sensor is on the side of experimental evaluation of construction reliability and results of data processing included safety procedures and function for hardware error correction. Redundant methane sensor units are used providing measurement error correction as well as improved measurement accuracy. The humidity and temperature sensors are used for internal compensation of methane measurements as well as for cutting-off the sensor from the environment when the conditions exceed allowable parameters. Results obtained during environment sensing prove that the gas concentration readings are not sensitive to gas chamber vertical or horizontal position. It is important as vertical sensor installation on soil probe is simpler that horizontal one. Data acquired during six month of environment monitoring prove that error correction of methane sensing units was essential for maintenance free sensor operation, despite used safety procedures.
机译:如今,甲烷传感器主要在安全报警装置中找到应用,气体参数检测和空气污染分类。这种传感器和传感器元素都存在用于行业和家庭使用。在甲烷传感器的开发领域,应用专用于地气体监测。对土壤气体的适当监测需要以相对较低的设备成本可靠和无维护的半常数和长时间检查。土壤监测传感器必须在土壤探针上工作。因此,传感器暴露于环境条件,随着古典甲烷传感器未指定的湿度变化以及雨水,雪和风的全湿度变化。本文提出了这种传感器的开发。所呈现的传感器结构由五种商用非分散红外线(Ndir)甲烷传感单元,一套温度和湿度传感单元,一种配备有微风扇,自动气阀的气体室,以及控制测量的微控制器程序。传感器的电子部件安装在配备自行式气阀的定制3D印刷外壳中。所提出的传感器的主要开发是在施工可靠性的实验评估方面,数据处理结果包括安全程序和硬件纠错功能。冗余甲烷传感器单元用于提供测量误差校正以及提高的测量精度。湿度和温度传感器用于甲烷测量的内部补偿以及当条件超过允许参数时从环境中切断传感器。环境感测期间获得的结果证明了气体浓度读数对气体室垂直或水平位置不敏感。由于土壤探头上的垂直传感器安装是重要的,这是横向的传感器。尽管使用安全程序,但是在六个月的环境监测期间获得的数据被证明是甲烷传感单元的纠错对于维护传感器操作至关重要。

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