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Chemical, physical, and optical evolution of biomass burning aerosols: a case study

机译:生物质燃烧气溶胶的化学,物理和光学演化:一个案例研究

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pstrongAbstract./strong In-situ chemical composition measurements of ambient aerosols have been used for characterizing the evolution of submicron aerosols from a large anthropogenic biomass burning (BB) event in Israel. A high resolution Time of Flight Aerosol Mass Spectrometer (HR-RES-TOF-AMS) was used to follow the chemical evolution of BB aerosols during a night-long, extensive nationwide wood burning event and during the following day. While these types of extensive BB events are not common in this region, burning of agricultural waste is a common practice. The aging process of the BB aerosols was followed through their chemical, physical and optical properties. Mass spectrometric analysis of the aerosol organic component showed that aerosol aging is characterized by shifting from less oxidized fresh BB aerosols to more oxidized aerosols. Evidence for aerosol aging during the day following the BB event was indicated by an increase in the organic mass, its oxidation state, the total aerosol concentration, and a shift in the modal particle diameter. The effective broadband refractive index (EBRI) was derived using a white light optical particle counter (WELAS). The average EBRI for a mixed population of aerosols dominated by open fires was im/i = 1.53(±0.03) + 0.07ii/i(±0.03), during the smoldering phase of the fires we found the EBRI to be im/i = 1.54(±0.01) + 0.04ii/i(±0.01) compared to im/i = 1.49(±0.01) + 0.02ii/i(±0.01) of the aged aerosols during the following day. This change indicates a decrease in the overall aerosol absorption and scattering. Elevated levels of particulate Polycyclic Aromatic Hydrocarbons (PAHs) were detected during the entire event, which suggest possible implications for human health during such extensive event./p.
机译:> >摘要。已使用环境气溶胶的原位化学成分测量来表征以色列大型人为生物量燃烧(BB)事件引起的亚微米气溶胶的演变。在一个为期一整夜的全国范围广泛的木材燃烧事件中以及第二天,使用了高分辨率的飞行时间气溶胶质谱仪(HR-RES-TOF-AMS)来跟踪BB气溶胶的化学演变。尽管这类广泛的BB事件在该地区并不常见,但燃烧农业废弃物是一种普遍做法。 BB气雾剂的化学,物理和光学特性遵循其老化过程。气溶胶有机成分的质谱分析表明,气溶胶老化的特征是从氧化程度较低的新鲜BB气溶胶转变为氧化程度更高的气溶胶。在BB事件后的第二天,气溶胶老化的证据是有机质的增加,其氧化态,总气溶胶浓度和模态粒径的变化。有效宽带折射率(EBRI)使用白光光学粒子计数器(WELAS)得出。在闷烧阶段,明火占主导地位的混合气溶胶的平均EBRI为 m = 1.53(± 0.03)+ 0.07 i (± 0.03)。在火灾中,我们发现EBRI为 m = 1.54(± 0.01)+ 0.04 i (± 0.01),而 m = 1.49第二天的老化气雾剂(± 0.01)+ 0.02 i (± 0.01)。这种变化表明总体气溶胶吸收和散射减少。在整个事件期间,检测到颗粒状多环芳烃(PAHs)含量升高,这表明在如此广泛的事件中可能对人体健康产生影响。

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