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Sensitivity of the Single Particle Soot Photometer to different black carbon types

机译:单粒子烟灰率对不同黑碳类型的敏感性

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Black carbon (BC) is now mainly of anthropogenic origin. It is the dominant light absorbing component of atmospheric aerosols, playing an important role in the earth's radiative balance and therefore relevant to climate change studies. In addition, BC is known to be harmful to human beings making it relevant to policy makers. Nevertheless, the measurement of BC remains biased by the instrument-based definition of BC. The Single Particle Soot Photometer (SP2), allows the measurement of the refractory BC (rBC) mass of individual particles using laser-induced incandescence. However, the SP2 needs an empirical calibration to retrieve the rBC mass from the incandescence signal and the sensitivity of the SP2 differs between different BC types. Ideally, for atmospheric studies, the SP2 should be calibrated using ambient particles containing a known mass of ambient rBC. However, such "ambient BC" calibration particles cannot easily be obtained and thus commercially available BC particles are commonly used for SP2 calibration instead. In this study we tested the sensitivity of the SP2 to different BC types in order to characterize the potential error introduced by using non-ambient BC for calibration. The sensitivity of the SP2 was determined, using an aerosol particle mass analyzer, for rBC from thermodenuded diesel exhaust, wood burning exhaust and ambient particles as well as for commercially available products: Aquadag? and fullerene soot. Thermodenuded, fresh diesel exhaust has been found to be ideal for SP2 calibration for two reasons. First, the small amount of non-BC matter upon emission reduces the risk of bias due to incomplete removal of non-BC matter and second, it is considered to represent atmospheric rBC in urban locations where diesel exhaust is the main source of BC. The SP2 was found to be up to 16% less sensitive to rBC from thermodenuded ambient particles (15 fg) than rBC from diesel exhaust, however, at least part of this difference can be explained by incomplete removal of non-refractory components in the thermodenuder. The amount of remaining non-refractory matter was estimated to be below 30% by mass, according to a comparison of the scattering cross sections of the whole particles with that of the pure BC cores. The SP2 sensitivity to rBC from wood burning exhaust agrees with the SP2 sensitivity to rBC from diesel exhaust within an error of less than 14% (40 fg). If, due to experimental restrictions, diesel exhaust cannot be used, untreated fullerene soot was found to give an SP2 calibration curve similar to diesel exhaust and ambient rBC (within ±10% for a rBC mass 15 fg) and is therefore recommended although two different batches differed by ~14% between themselves. In addition, the SP2 was found to be up to 40% more sensitive to Aquadag? than to diesel exhaust rBC. Therefore Aquadag? cannot be recommended for atmospheric application without accounting for the sensitivity difference. These findings for fullerene soot and Aquadag? confirm results from previous literature.
机译:黑碳(BC)现在主要是人为原产地。它是大气气溶胶的主导光吸收组件,在地球的辐射平衡中发挥着重要作用,因此与气候变化研究相关。此外,已知BC对人类有害,使其与政策制定者有关。然而,BC的测量仍然受到BC的基于仪器的定义偏置的偏置。单粒子烟灰光度计(SP2),允许使用激光诱导的白炽法测量各个颗粒的难熔BC(RBC)质量。然而,SP2需要经验校准来检索来自白炽信号的RBC质量,并且SP2的灵敏度在不同的BC类型之间不同。理想情况下,对于大气研究,应使用含有已知质量的环境RBC的环境颗粒校准SP2。然而,这种“环境BC”校准颗粒不能容易获得,因此商业上可获得的BC颗粒通常用于SP2校准。在该研究中,我们测试了SP2对不同BC类型的灵敏度,以表征通过使用非环境BC进行校准引入的潜在误差。使用气溶胶颗粒质量分析仪测定SP2的敏感性,用于来自热电型柴油机排气,木材燃烧的废气和环境颗粒以及市售产品:Aquadag?和富勒烯烟灰。热固性的新鲜柴油机已被发现是SP2校准的理想选择,有两个原因。首先,由于不完全除去非BC问题,发射后,少量非BC物质降低了偏差的风险,并且其被认为在柴油排气是BC的主要来源的城市地点中表示大气RBC。发现SP2高达16%对RBC的敏感性低于来自柴油排气的RBC的RBC,然而,该差异的至少一部分可以通过不完全去除热抑制剂中的非耐火材料组分来解释。根据整个颗粒的散射横截面与纯BC芯的散射横截面的比较,剩余非耐火材料的量估计低于30质量%。从木材燃气排气到RBC的SP2敏感性与SP2对RBC的SP2灵敏度从柴油排气到误差小于14%(40fg)。如果由于实验限制,不能使用柴油排气,发现未经处理的富勒烯烟灰将类似于柴油排气和环境RBC的SP2校准曲线(用于RBC质量15 FG的±10%),因此虽然两种不同批次之间的差异不同于〜14%。此外,SP2被发现高达40%对Aquadag更敏感?而不是柴油排气rbc。因此aquadag?不能推荐用于大气应用,而无需占敏感性差异。这些调查结果为富勒烯烟灰和aquadag?确认以前的文献结果。

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