首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Measurement of total PM2.5 mass (nonvolatile plus semivolatile) with the Filter Dynamic Measurement System tapered element oscillating microbalance monitor
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Measurement of total PM2.5 mass (nonvolatile plus semivolatile) with the Filter Dynamic Measurement System tapered element oscillating microbalance monitor

机译:使用过滤器动态测量系统锥形元件振荡微量天平监测仪测量PM2.5的总质量(非易失性和半挥发性)

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摘要

Field studies have been performed in Lindon, Utah (February 2003) and Rubidoux, California (July 2003) to determine if the Rupprecht and Patashnick (R&P) Filter Dynamic Measurement System (FDMS) determines total fine particulate mass, including the semivolatile ammonium nitrate and organic material. Collocated measurements were made with the FDMS, a conventional tapered element oscillating microbalance (TEOM) monitor with a heated filter, an R&P differential TEOM monitor, the Brigham Young University (BYU) Real-Time Total Ambient Mass Sampler (RAMS), the BYU particle concentrator-organic sampling system (PC-BOSS), a PM2.5 Federal Reference Method (FRM), a PM2.5 speciation sampler, an R&P continuous nitrate monitor, and two Sunset continuous carbon monitors (one to measure quartz filter-retained particulate carbon and one to measure particulate semivolatile carbonaceous material lost from the particles on a filter during sampling). The RAMS and PC-BOSS samplers have been shown to determine fine particulate material, including both the semivolatile and the nonvolatile components. Linear regression analysis at the Lindon site between the FDMS (X) and the PC-BOSS (Y), and the FDMS (X) and the RAMS (Y), resulted in zero-intercept slopes of 1.01 ± 0.06 (r2 = 0.63) and 1.00 ± 0.01 (r2 = 0.69), respectively. At the Rubidoux sampling site, linear regression analysis between the PC-BOSS (X) and the FDMS (Y) gave a zero-intercept slope of 0.96 ± 0.02 (r2 = 0.90). Linear regression analysis between the FDMS (X) and the RAMS (Y) resulted in a zero-intercept slope of 0.99 ± 0.01 (r2 = 0.80). Measurements made at the two sites indicate that the FDMS and the R&P differential TEOM monitors do measure total fine particulate mass, including the semivolatile ammonium nitrate and organic material. Both the heated TEOM monitor and PM2.5 FRM did not measure the semivolatile material. The difference between the FDMS and a heated TEOM monitor was explained by the semivolatile ammonium nitrate and organic material measured by the various chemical composition monitors.
机译:已经在犹他州的Lindon(2003年2月)和加利福尼亚的Rubidoux(2003年7月)进行了现场研究,以确定Rupprecht和Patashnick(R&P)过滤器动态测量系统(FDMS)是否确定了总的细颗粒质量,包括半挥发性硝酸铵和有机材料。使用FDMS,常规的带加热过滤器的锥形元素振荡微量天平(TEOM)监测器,R&P差分TEOM监测器,杨百翰大学(BYU)实时总环境质量采样器(RAMS),BYU颗粒进行并置测量浓缩器-有机取样系统(PC-BOSS),PM2.5联邦参考方法(FRM),PM2.5形态取样器,R&P连续硝酸盐监测器和两台Sunset连续碳监测器(一个用于测量石英滤池中保留的颗粒物碳和一种用于测量在采样过程中从过滤器上的颗粒损失的颗粒状半挥发性含碳物质的方法)。已显示RAMS和PC-BOSS采样器可确定细颗粒物质,包括半挥发性和非挥发性成分。在FDMS(X)和PC-BOSS(Y)之间以及FDMS(X)和RAMS(Y)之间的Lindon位置进行线性回归分析,得出零截距斜率为1.01±0.06(r2 = 0.63)和1.00±0.01(r2 = 0.69)。在Rubidoux采样点,PC-BOSS(X)和FDMS(Y)之间的线性回归分析得出零拦截斜率为0.96±0.02(r2 = 0.90)。 FDMS(X)和RAMS(Y)之间的线性回归分析得出零截距斜率为0.99±0.01(r2 = 0.80)。在这两个地点进行的测量表明,FDMS和R&P差分TEOM监视器确实测量了总的细颗粒质量,包括半挥发性硝酸铵和有机材料。加热的TEOM监测器和PM2.5 FRM均未测量半挥发性物质。 FDMS和加热的TEOM监控器之间的差异是由各种化学成分监控器测得的半挥发性硝酸铵和有机物引起的。

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