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Measurement System Evaluation for Upwind/Downwind Sampling of Fugitive Dust Emissions

机译:扬尘顺风/顺风采样的测量系统评估

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Eight different PM10 samplers with various size-selective inlets and sample flow rates were evaluated for upwind/ downwind assessment of fugitive dust emissions from two sand and gravel operations in southern California during September through October 2008. Continuous data were acquired at one-minute intervals for 24 hours each day. Integrated filters were acquired at five-hour intervals between 1100 and 1600 PDT on each day because winds were most consistent during this period. High-volume (hivol) size-selective inlet (SSI) PM10 Federal Reference Method (FRM) filter samplers were comparable to each other during side-by-side sampling, even under high dust loading conditions. Based on linear regression slope, the BGI low-volume (lovol) PQ200 FRM measured ~18% lower PM10 levels than a nearby hivol SSI in the source-dominated environment, even though tests in ambient environments show they are equivalent. Although the TSI DustTrak DRX PM10 concentrations did not equal those from the hivol SSI, both instruments were highly correlated (R = 0.9) at the two downwind sites. Multiple size ranges from the TSI DustTrak DRX and Grimm optical particle counters (OPC) allowed the identification of spatial non-uniformity for sources within and outside the facilities. Narrow dust plumes were only detected by some of the continuous instruments across the sampler array. Upwind PM10 concentrations at one of the locations were higher than the downwind concentrations owing to a high concentration of industrial and vehicular activities. The shorter-duration measurements and quantification of super-coarse (> 10 μm) particles with high deposition velocities available from optical particle counters is needed to evaluate the effects of local emissions on both upwind and downwind samples.
机译:评估了八种不同的PM10采样器,这些采样器具有不同的尺寸选择入口和样品流量,用于在上风/下风时评估加利福尼亚南部在2008年9月至2008年10月两次沙子和砾石开采活动中的扬尘排放。以1分钟为间隔获取连续数据每天24小时。每天以1100 PDT和1600 PDT之间的五个小时间隔获取集成过滤器,因为在此期间风力最为稳定。大容量(大容量)尺寸选择入口(SSI)PM10联邦参考方法(FRM)过滤器采样器在并排采样过程中甚至在高粉尘负荷条件下也可以相互媲美。根据线性回归斜率,即使在周围环境中进行的测试表明,BGI低容量(lovol)PQ200 FRM的PM10水平也比附近的hivol SSI降低了约18%,即使在周围环境中进行的测试也是如此。尽管TSI DustTrak DRX PM10的浓度与hivol SSI的浓度不相等,但两种仪器在两个顺风点高度相关(R = 0.9)。 TSI DustTrak DRX和Grimm光学粒子计数器(OPC)具有多种尺寸范围,可以识别设施内部和外部来源的空间不均匀性。仅通过整个采样器阵列中的某些连续仪器可以检测到狭窄的尘埃羽流。由于工业和车辆活动的高度集中,其中一个位置的上风PM10浓度高于下风浓度。需要短时间的测量和对具有较高沉积速度的超粗(> 10μm)颗粒进行定量,这些颗粒可从光学粒子计数器获得,以评估局部排放对迎风和顺风样品的影响。

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