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Joint measurements of PM2.?5 and light-absorptive PM in woodsmoke-dominated ambient and plume environments

机译:PM2.5的联合测量。在木质OKE主导的环境和羽流环境中的PM2.5和光吸收下垂

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DC, also referred to as Delta-C, measures enhanced light absorption of particulate matter (PM) samples at the near-ultraviolet (UV) range relative to the near-infrared range, which has been proposed previously as a woodsmoke marker due to the presence of enhanced UV light-absorbing materials from wood combustion. In this paper, we further evaluated the applications and limitations of using DC as both a qualitative and semi-quantitative woodsmoke marker via joint continuous measurements of PM2.?5 (by nephelometer pDR-1500) and light-absorptive PM (by 2-wavelength and 7-wavelength Aethalometer?) in three northeastern US cities/towns including Rutland, VT; Saranac Lake, NY and Ithaca, NY. Residential wood combustion has shown to be the predominant source of wintertime primary PM2.?5 emissions in both Rutland and Saranac Lake, where we conducted ambient measurements. In Ithaca, we performed woodsmoke plume measurements. We compared the pDR-1500 against a FEM PM2.?5 sampler (BAM 1020), and identified a close agreement between the two instruments in a woodsmoke-dominated ambient environment. The analysis of seasonal and diurnal trends of DC, black carbon (BC, 880?nm) and PM2.?5 concentrations supports the use of DC as an adequate qualitative marker. The strong linear relationships between PM2.?5 and DC in both woodsmoke-dominated ambient and plume environments suggest that DC can reasonably serve as a semi-quantitative woodsmoke marker. We propose a DC-based indicator for woodsmoke emission, which has shown to exhibit a relatively strong linear relationship with heating demand. While we observed reproducible PM2.?5–DC relationships in similar woodsmoke-dominated ambient environments, those relationships differ significantly with different environments, and among individual woodsmoke sources. Our analysis also indicates the potential for PM2.?5–DC relationships to be utilized to distinguish different combustion and operating conditions of woodsmoke sources, and that DC–heating-demand relationships could be adopted to estimate woodsmoke emissions. However, future studies are needed to elucidate those relationships.
机译:DC,也被称为Δ-C,措施增强的颗粒物质(PM)的样品的光吸收在近紫外光相对于(UV)范围到近红外线范围时,先前已经提出了作为一个woodsmoke标记由于从木材燃烧增强UV光吸收材料的存在。在本文中,我们进一步评估使用DC作为对应用程序和局限性都定性和半定量woodsmoke标记经由PM2.?5的联合的连续测量(由浊度计PDR-1500)和光吸收PM(由2波长和7波长Aethalometer)三个美国东北部城市/城镇包括拉特兰,VT?;萨拉纳克莱克,纽约州和纽约州伊萨卡。住宅木材燃烧已证明是在两个拉特兰和萨拉纳克莱克,在那里我们进行环境测量冬季主要PM2.?5排放的主要来源。在伊萨卡,我们进行woodsmoke羽测量。我们比较了PDR-1500针对FEM PM2.?5采样器(BAM 1020),并确定在woodsmoke为主周围环境的两台仪器之间的密切协议。的DC,黑碳(BC,880?nm)与PM2.?5浓度的季节和昼夜趋势的分析支持使用DC作为适当的定性标志。在这两个woodsmoke主导的环境和羽环境PM2.?5和DC之间的强烈的线性关系表明,DC可以合理地作为一个半定量woodsmoke标记。我们提出了woodsmoke排放,这已经显示出表现出与加热需求相对强的线性关系基于DC-指示符。虽然我们观察到类似的woodsmoke为主周围环境重复性PM2.?5-DC的关系,这些关系具有不同的环境显著不同,个别woodsmoke来源。我们的分析还指示要被用于PM2.?5-DC关系的潜力来区分不同的燃烧和woodsmoke源操作条件,以及DC-加热需求关系可以通过以估计woodsmoke排放。然而,还需要进一步的研究来阐明这些关系。

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