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Errors in Ultraviolet Fluence Calculations Due to Particles in Wastewater Samples

机译:废水样品中的颗粒导致的紫外线通量计算误差

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Conventional spectrophotometers that do not include an integrating sphere assembly do not account for scattered ultraviolet (UV) light in a water sample containing particles and can therefore overpredict absorbance. Water samples from the secondary effluent of a municipal wastewater treatment plant were monitored over the course of 1 year to determine whether the error introduced in UV absorbance measurements when neglecting scatter was significant. The error was interpreted in terms of UV fluence that would be calculated for varying path lengths of solution. The error ranged from 10% to over 90% and increased independently with total suspended solids and path length. Combination of increasing path length and total suspended solids, together, amplified the error. This study demonstrates that, in some situations, integrating sphere absorbance measurements may be warranted to minimize significant errors in estimated UV fluences; however, in other situations (e.g., short path lengths), conventional spectrophotometers may be sufficient.
机译:不包含积分球组件的常规分光光度计不能解决包含颗粒的水样品中的散射紫外线(UV),因此可能会过高地预测吸收率。在一年的过程中,对市政污水处理厂二次废水的水样进行了监测,以确定忽略散射时紫外线吸收率测量中引入的误差是否显着。该误差是根据紫外线通量来解释的,该通量将针对溶液的不同路径长度进行计算。误差范围从10%到90%以上,并且随着总悬浮固体和路径长度的增加而独立增加。增加光程长度和总悬浮固体的结合在一起,扩大了误差。这项研究表明,在某些情况下,可能需要对球体吸光度进行积分测量,以最大程度地减少估计的紫外线通量中的重大误差。然而,在其他情况下(例如,短路径长度),常规分光光度计可能就足够了。

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