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FLOC CHARACTERISATION BY ANALYSIS OF LASER BEAM ATTENUATION

机译:通过激光束衰减分析表征FLOC

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The continuous growth in the demand of good quality water for different purposes makes the control of environmental pollution a matter for public and official concern. The monitoring of particles for quality control of water or wastewater treatment is becoming important and the need for the development of control devices is increasing. The purpose of this work was to develop a photosedimentation method for floc characterization combining gravitational settling with photoelectric measurements. Settling particles cross a light beam that illuminates a detection system. The attenuation of the beam is related to the projected area of the particles and so the particle size distribution can be determined. When a floc crosses the beam, the amount of light reaching the detector is reduced. Voltage/time signals are analyzed in order to produce the physical characteristics of floes such as size and density. Different light sources and detection systems were tested in calibration tests and afterwards flocculated suspensions were used for experimental analysis. Floc characteristics could then be related to the experimental conditions of floc formation (mixing conditions and polymer concentration). With the experience acquired, a prototype was designed and implemented, being capable of operating in laboratory or field conditions.
机译:出于不同目的对优质水的需求不断增长,环境污染的控制成为公众和官方关注的问题。用于水或废水处理的质量控制的颗粒监测变得越来越重要,并且对控制装置的开发的需求也在增加。这项工作的目的是开发一种将重力沉降与光电测量相结合的絮凝特性的光沉降方法。沉淀粒子穿过照亮检测系统的光束。光束的衰减与粒子的投影面积有关,因此可以确定粒径分布。当絮状物穿过光束时,到达检测器的光量减少。分析电压/时间信号以产生絮凝物的物理特性,例如尺寸和密度。在校准测试中测试了不同的光源和检测系统,然后将絮凝的悬浮液用于实验分析。絮凝特性然后可能与絮凝物形成的实验条件(混合条件和聚合物浓度)有关。凭借所获得的经验,设计并实施了能够在实验室或现场条件下运行的原型。

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