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一种用于铜精矿闪速燃烧器火焰监测的光电传感器的研制与应用

Development and Application of an Optoelectronic Sensor for Flame Monitoring of a Copper Concentrate Flash Burner.

作者信息

Reyes Gonzalo, Díaz Walter, Toro Carlos, Balladares Eduardo, Torres Sergio, Parra Roberto, Torres-Sanhueza Jonathan, Roa Maximiliano, Taramasco Carla, Montenegro Víctor, Kadiyski Milen

机构信息

Metallurgical Engineering Department, Universidad de Concepción, Concepción 4070386, Chile.

Faculty of Engineering, Universidad Andres Bello, Autopista Concepción-Talcahuano 7100, Talcahuano 4260000, Chile.

出版信息

Sensors (Basel). 2025 May 3;25(9):2897. doi: 10.3390/s25092897.

Abstract

A flash smelting furnace operation is based on the exothermic reduction of copper concentrates in the combustion shaft, and these reactions occur at high temperatures (1250-1350 °C), where flame control is fundamental to optimizing copper reduction. Furthermore, inherent physicochemical reactions of the reduction process have been shown to emit spectral lines in the visible-near infrared spectrum (250-900 nm). Thus, an optoelectronic sensor prototype is proposed and developed for flame measurements of an industrial copper concentrate flash smelting furnace. The sensor system is composed of a high-temperature optical fiber probe, which functions as a waveguide to capture the emitted flame radiation and a visible-near infrared spectrometer. From the measured radiation, flame temperature and flame dynamics are analyzed. Flame temperature is estimated using the two-wavelength temperature estimation method, and flame dynamics are defined as variations in the total emissive power, which are studied in the time and frequency domain via the Fourier Transform method. These combustion dynamics are then used to create a flame instability index, which is used to characterize the flame combustion quality. The combination of this index and sensor platform provides a powerful tool to aid in proper flame control.

摘要

闪速熔炼炉的操作基于在燃烧竖炉中对铜精矿进行放热还原,这些反应在高温(1250 - 1350°C)下发生,在此火焰控制对于优化铜还原至关重要。此外,还原过程中固有的物理化学反应已被证明会在可见 - 近红外光谱(250 - 900 nm)中发射光谱线。因此,提出并开发了一种用于工业铜精矿闪速熔炼炉火焰测量的光电传感器原型。该传感器系统由一个高温光纤探头组成,它作为波导来捕获发射的火焰辐射以及一台可见 - 近红外光谱仪。根据测量的辐射来分析火焰温度和火焰动态。使用双波长温度估计方法估算火焰温度,火焰动态定义为总发射功率的变化,通过傅里叶变换方法在时域和频域中对其进行研究。然后利用这些燃烧动态创建一个火焰不稳定性指数,用于表征火焰燃烧质量。该指数与传感器平台的结合提供了一个强大的工具,有助于进行适当的火焰控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5183/12074218/d83a6e013920/sensors-25-02897-g001.jpg

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