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How particles affect UV light in the UV disinfection of unfiltered drinking water

机译:未过滤的饮用水的紫外线消毒中,颗粒如何影响紫外线

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This study assessed the impact of suspended particles on both ultraviolet (UV) dose transmission and spectrophotometric absorbance measurement for unfiltered raw water with turbidity up to 10 ntu. Results from bench-scale collimated beam experiments indicated that a low percentage of total incident UV light was attenuated by particles at 5 ntu turbidity. However, at a set applied UV dose, when particles were added to achieve turbidity from 1 to 10 ntu, the average dose in the collimated beam reactor decreased from 5 to 33%, respectively. This suggests that spikes in particles entering a UV reactor, if not adjusted and accounted for, may compromise lethal delivery of UV energy. UV absorbance coefficients, measured using direct and integrating sphere spectroscopy (which accounts for scattering effects by particles) were significantly different, suggesting that suspended particles in unfiltered water both absorb and scatter UV light. When absorbance, measured using the direct method, was used to model the average irradiance in a UV reactor, the average UV irradiance was underestimated by 3 to 20% at turbidity of 3 to 10 ntu, respectively, compared with irradiance calculations made using integrating sphere absorbance measurements. This analysis suggests that UV systems designed based on direct absorbance measurements of unfiltered waters with turbidity above 3 ntu may be overly conservative.
机译:这项研究评估了浊度高达10 ntu的未经过滤原水的悬浮颗粒对紫外线(UV)剂量传输和分光光度法吸光度测量的影响。台式准直光束实验的结果表明,在5 ntu浊度下,总入射紫外线的百分率很小。但是,在设定的紫外线剂量下,当添加颗粒以使浊度从1到10 ntu时,准直束反应器中的平均剂量分别从5%降低到33%。这表明,如果不进行调整和考虑,进入紫外线反应器的颗粒中的尖峰可能会损害致命的紫外线能量传递。使用直接和积分球光谱法(其解释了颗粒的散射效应)测量的UV吸收系数显着不同,这表明未过滤水中的悬浮颗粒会吸收和散射UV光。当使用直接法测量的吸光度用于对UV反应器中的平均辐照度进行建模时,与使用积分球进行的辐照度计算相比,在3至10 ntu的浊度下,平均UV辐照度分别低估了3至20%。吸光度测量。该分析表明,基于浊度大于3 ntu的未过滤水的直接吸光度测量设计的紫外线系统可能过于保守。

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