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Water Quality Measurement using Transmittance and 90?° Scattering Techniques through Optical Fiber Sensor

机译:通过光纤传感器使用透射率和90°散射技术的水质测量

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This research is the continuance of the previous developed water quality fiber sensor by Omar et al (2007). The application of spectroscopy analysis is the major tasks established in the measurement of the capacity of total suspended solids (TSS) in water sample in the unit of mg/L. The interaction between the incident light and the turbid water sample will leads the light to be either transmitted through the water sample or absorbed and scattered by water molecules and TSS particles. The resultant light produced after the interaction will be collected by plastic optical fiber located at 180?° (transmittance measurement technique) and 90?° (90?° scattering measurement technique) from the incident light. The measurement is done through BLUE and RED Systems with peak response of emitter and detector at 470nm and 635nm respectively. Signal interpretation and data display is established through Basic Stamp 2 microcontroller. Transmittance measurement technique has a capability to sense the amount of solids suspended in water as low as 20mg/L. 90?° measurement technique has a capability to sense the amount of solids suspended in water as low as 10mg/L. Both measurement techniques recorded a very good linear correlation coefficient and low standard error.
机译:该研究是Omar等人(2007)的先前发达的水质纤维传感器的延续。光谱分析的应用是在MG / L单位中测量水样中的总悬浮固体(TSS)的容量中建立的主要任务。入射光与浑浊水样之间的相互作用将导致光通过水样或被水分子和TSS颗粒吸收和散射。在相互作用后产生的所得光通过位于180Ω°(透射率测量技术)和90?°(90°散射测量技术)的塑料光纤收集。测量通过蓝色和红色系统进行,分别具有470nm和635nm的发射器和探测器的峰值响应。信号解释和数据显示通过基本印记2微控制器建立。透射率测量技术具有感测悬浮在水中低至20mg /升的固体量的能力。 90?°测量技术的能力感测悬浮在水中低至10mg / L的固体量。两个测量技术记录了非常好的线性相关系数和低标准误差。

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