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Protocol Evaluation of the Total Suspended Solids and Suspended Sediment Concentration Methods: Solid Recovery Efficiency and Application for Stormwater Analysis

机译:总悬浮物和悬浮泥沙浓度方法的协议评估:固体回收效率及其在雨水分析中的应用

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摘要

Total suspended solids (TSS) is routinely measured in water and wastewater treatment plants, and protocols are well-known. The TSS measurement in stormwater is more difficult, because the particle size and density can be much greater, biasing the sample if it is collected from a poorly mixed location or allowed to settle in a quiescent collection container. An alternative method, called suspended sediment concentration (SSC), uses a different protocol, which analyzes the entire contents of the sample collection container. The SSC method is not compatible with many monitoring programs, which require several constituents to be analyzed from a single sample container, such as from a flow-weighted composite sample. This paper addresses TSS protocol using glass beads and samples with known particle size distribution and shows that proper mixing, combined with appropriate pipettes, can largely avoid sampling error for typical sediments as large as 250 μm with specific gravity of 2.6.
机译:通常在水和废水处理厂中测量总悬浮固体(TSS),并且操作规程众所周知。雨水中的TSS测量更加困难,因为颗粒大小和密度可能更大,如果从混合不良的位置收集样品或将其放置在静态收集容器中会使样品产生偏差。另一种称为悬浮沉淀物浓缩(SSC)的方法使用了不同的协议,该协议可以分析样品收集容器的全部内容物。 SSC方法与许多监视程序不兼容,这些监视程序需要从单个样品容器(例如,流量加权复合样品)中分析几种成分。本文介绍了使用玻璃珠和具有已知粒度分布的样品进行的TSS方案,并显示了适当的混合以及适当的移液器可以大大避免典型比重为250μm,比重为2.6的沉积物的采样误差。

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