首页> 外文期刊>Atmospheric Measurement Techniques >Multiple-scattering correction factor of quartz filters and the effect of filtering particles mixed in water: implications for analyses of light absorption in snow samples
【24h】

Multiple-scattering correction factor of quartz filters and the effect of filtering particles mixed in water: implications for analyses of light absorption in snow samples

机译:石英滤波器的多散射校正因子及其混合水中粒子的效果:对雪样中光吸收分析的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The deposition of light-absorbing aerosol (LAA) onto snow initiates processes that lead to increased snowmelt. Measurements of LAA, such as black carbon (BC) and mineral dust, have been observed globally to darken snow. Several measurement techniques of LAA in snow collect the particulates on filters for analysis. Here we investigate micro-quartz filters' optical response to BC experiments in which the particles are initially suspended in air or in a liquid. With particle soot absorption photometers (PSAPs) we observed a 20% scattering enhancement for quartz filters compared to the standard PSAP Pallflex filters. The multiple-scattering correction factor (C-ref) of the quartz filters for airborne soot aerosol is estimated to be similar to 3.4. In the next stage correction factors were determined for BC particles mixed in water and also for BC particles both mixed in water and further treated in an ultrasonic bath. Comparison of BC collected from airborne particles with BC mixed in water filters indicated a higher mass absorption cross section by approximately a factor of 2 for the liquid-based filters, which is probably due to the BC particles penetrating deeper in the filter matrix. The ultrasonic bath increased absorption still further, roughly by a factor of 1.5, compared to only mixing in water. Application of the correction functions to earlier published field data from the Himalaya and Finnish Lapland yielded mass absorption coefficient (MAC) values of similar to 7-10 m(2) g(-1) at lambda = 550 nm, which is in the range of the published MAC of airborne BC aerosol.
机译:将光吸收气溶胶(LAA)的沉积在雪中引发过程中导致雪花的过程。 Laa的测量,如黑碳(BC)和矿物粉尘,已在全球范围内观察到变暗雪。 Laa在雪中的几种测量技术在过滤器上收集颗粒进行分析。在这里,我们研究了对BC实验的微石英滤波器的光学响应,其中颗粒最初悬浮在空气中或液体中。对于颗粒烟灰吸收光度计(Psaps),与标准PSAP Pallflex过滤器相比,我们观察了石英滤波器的20%散射增强。用于空气传播的烟灰气溶胶的石英滤波器的多散射校正因子(C-REF)估计与3.4类似。在下一阶段的校正因子中,测定在水中混合的BC颗粒,并且还用于在水中混合的BC颗粒并进一步处理在超声浴中。从空气过滤器中混合的BC收集的BC的比较表示液体基过滤器的较高质量吸收横截面,这可能是由于在过滤基质中穿透更深的BC颗粒。与仅在水中混合相比,超声波浴仍然增加吸收仍然进一步,大约为1.5倍。校正功能在喜马拉雅和芬兰的Lapland中的早期公布的现场数据的应用,其在Lambda = 550nm处的7-10μm(-1)的质量吸收系数(Mac)值,其在该范围内公布BC气溶胶的已发表的MAC。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号