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Device for real-time monitoring of oil-in-water and suspended solids based on thermal lens spectrometry and light scattering

机译:基于热透镜光谱和光散射的水 - 水和悬浮固体的实时监测装置

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摘要

A novel system suitable for simultaneous monitoring of both oil-in-water and suspended solids based on thermal lens spectroscopy and forward light scattering is presented. The technique measures the concentration of dissolved hydrocarbons and simultaneously detects single oil droplets and suspended particles separately. The device was tested with injection water samples from an on-field water treatment plant, and hydrocarbon concentrations were measured with a precision better than 5% in the range of up to 100 ppm, reaching resolutions as low as 0.03 ppm. Particle detection was tested with model samples of dyed and undyed polystyrene spheres acting as absorption and scattering centers, which simulated oil droplets and suspended solids, respectively. We show that particles of different sizes are distinguished by the magnitude of the perturbations introduced in the signals, and their concentrations can be measured independently of dissolved components. (C) 2020 Optical Society of America
机译:呈现了一种新的系统,适用于基于热透镜光谱和前向光散射同时监测水包油和悬浮固体。 该技术测量溶解烃的浓度,并同时分别检测单个油滴和悬浮颗粒。 用来自现场水处理厂的喷射水样品测试该装置,并在高达100ppm的范围内的精度比5%的精度测量烃浓度,达到低至0.03ppm的分辨率。 用作用为吸收和散射中心的染色和未染色的聚苯乙烯球体的模型样品测试颗粒检测,其分别模拟油滴和悬浮固体。 我们表明不同尺寸的颗粒通过信号中引入的扰动的大小来区分,它们的浓度可以独立于溶解组分测量。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共10页
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