Yu Ke, Yang Xiaopeng, Wang Yijie, Zhang Penghui, Zhang Lei, Tan Qiulin
Key Laboratory of Micro/nano Devices and Systems, Ministry of Education, North University of China, Tai Yuan 030051, China.
State Key Laboratory of Dynamic Measurement Technology, North University of China, Tai Yuan 030051, China.
Rev Sci Instrum. 2024 Aug 1;95(8). doi: 10.1063/5.0203277.
The concentration of carbon dioxide (CO2) is an important indicator for coal mine safety. Real-time monitoring of CO2 concentration is of great importance for taking actions in advance to avoid the occurrence of potential accidents. To address the issues of poor portability and high cost associated with existing coal mine CO2 detection equipment, this paper develops a miniaturized CO2 detection system based on non-dispersive infrared (NDIR) technology. This sensor integrates an infrared light source and a dual-channel pyroelectric detector into a reflective gas chamber, thereby achieving an extended optical path and higher system sensitivity within limited space. Meanwhile, the noise interference was greatly mitigated by using hardware and software filtering techniques. Based on principle analysis, the Lambert-Beer law was parametrically corrected, and then, a model relationship between the dual-channel voltage ratio and concentration was established. In addition, temperature compensation for zero and span values was introduced to improve the adaptability of the detection results to temperature changes. Testing results indicate that the developed detection system can realize CO2 measurement in the concentration range of 0 to 50 000 ppm within a temperature range of 0-40 °C, with a maximum detection error of less than 0.12% and a repeatability deviation of less than 1.04%. During a stability test for 12 h, the maximum concentration drift is 0.07%, indicating that the developed system meets the requirements for monitoring CO2 safety in coal mines.
二氧化碳(CO₂)浓度是煤矿安全的重要指标。实时监测CO₂浓度对于提前采取行动以避免潜在事故的发生至关重要。为了解决现有煤矿CO₂检测设备便携性差和成本高的问题,本文开发了一种基于非色散红外(NDIR)技术的小型化CO₂检测系统。该传感器将红外光源和双通道热释电探测器集成到一个反射气室中,从而在有限空间内实现了更长的光程和更高的系统灵敏度。同时,通过硬件和软件滤波技术大大减轻了噪声干扰。在原理分析的基础上,对朗伯-比尔定律进行了参数校正,然后建立了双通道电压比与浓度之间的模型关系。此外,引入了零点和量程值的温度补偿,以提高检测结果对温度变化的适应性。测试结果表明,所开发的检测系统能够在0至40°C的温度范围内实现0至50000 ppm浓度范围内的CO₂测量,最大检测误差小于0.12%,重复性偏差小于1.04%。在12小时的稳定性测试中,最大浓度漂移为0.07%,表明所开发的系统满足煤矿CO₂安全监测的要求。