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Impacts of brown carbon from biomass burning on surface UV and ozone photochemistry in the Amazon Basin

机译:生物量燃烧产生的褐碳对亚马逊河流域表面紫外线和臭氧光化学的影响

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摘要

The spectral dependence of light absorption by atmospheric particulate matter has major implications for air quality and climate forcing, but remains uncertain especially in tropical areas with extensive biomass burning. In the September-October 2007 biomass-burning season in Santa Cruz, Bolivia, we studied light absorbing (chromophoric) organic or “brown” carbon (BrC) with surface and space-based remote sensing. We found that BrC has negligible absorption at visible wavelengths, but significant absorption and strong spectral dependence at UV wavelengths. Using the ground-based inversion of column effective imaginary refractive index in the range 305–368 nm, we quantified a strong spectral dependence of absorption by BrC in the UV and diminished ultraviolet B (UV-B) radiation reaching the surface. Reduced UV-B means less erythema, plant damage, and slower photolysis rates. We use a photochemical box model to show that relative to black carbon (BC) alone, the combined optical properties of BrC and BC slow the net rate of production of ozone by up to 18% and lead to reduced concentrations of radicals OH, HO2, and RO2 by up to 17%, 15%, and 14%, respectively. The optical properties of BrC aerosol change in subtle ways the generally adverse effects of smoke from biomass burning.
机译:大气颗粒物吸收光的光谱依赖性对空气质量和气候强迫具有重要影响,但仍不确定,尤其是在生物质燃烧严重的热带地区。在玻利维亚圣克鲁斯(Santa Cruz)的2007年9月至10月生物质燃烧季节,我们研究了具有表面和空间遥感功能的吸光(发色)有机或“棕色”碳(BrC)。我们发现BrC在可见波长处的吸收可忽略不计,但在UV波长处具有显着的吸收并具有很强的光谱依赖性。使用基于地面的色谱柱有效虚折射率在305-368 nm范围内的反演,我们量化了BrC在紫外线中的吸收与光谱的强相关性,并减小了到达表面的紫外线B(UV-B)辐射。降低的UV-B意味着更少的红斑,植物损伤和较慢的光解速率。我们使用光化学盒模型显示,相对于单独的黑碳(BC),BrC和BC的组合光学特性使臭氧的净产生速率减慢了18%,并导致自由基OH,HO2的浓度降低,和RO2分别提高了17%,15%和14%。 BrC气溶胶的光学特性以微妙的方式变化,这是生物质燃烧产生的烟雾通常带来的不利影响。

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