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Direct radiative feedback due to biogenic secondary organic aerosol estimated from boreal forest site observations

机译:北方森林现场观测估计的生物成因有机有机气溶胶引起的直接辐射反馈

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We used more than five years of continuous aerosol measurements to estimate the direct radiative feedback parameter associated with the formation of biogenic secondary organic aerosol (BSOA) at a remote continental site at the edge of the boreal forest zone in Northern Finland. Our upper-limit estimate for this feedback parameter during the summer period (ambient temperatures above 10 °C) was ?97?±?66 mW m?2 K?1 (mean?±?STD) when using measurements of the aerosol optical depth (fAOD) and ?63?±?40 mW m?2 K?1 when using measurements of the 'dry' aerosol scattering coefficient at the ground level (fσ). Here STD represents the variability in f caused by the observed variability in the quantities used to derive the value of f. Compared with our measurement site, the magnitude of the direct radiative feedback associated with BSOA is expected to be larger in warmer continental regions with more abundant biogenic emissions, and even larger in regions where biogenic emissions are mixed with anthropogenic pollution.
机译:我们使用了五年以上的连续气溶胶测量方法,以估算与芬兰北部北方森林带边缘的一个偏远大陆站点上的生物成因有机有机气溶胶(BSOA)形成相关的直接辐射反馈参数。当使用气溶胶光学深度的测量值时,我们在夏季期间(环境温度高于10°C)对该反馈参数的上限估计为?97?±?66 mW m?2 K?1(平均值?±?STD)。 (fAOD)和?63?±?40 mW m?2 K?1,当使用地面水平(fσ)的“干”气溶胶散射系数测量值时。在此,STD表示由观察到的用于推导f值的数量的变化引起的f的变化。与我们的测量地点相比,与BSOA相关的直接辐射反馈的强度在生物体排放量丰富的较温暖的大陆地区预计会更大,在生物体排放物与人为污染混合的地区甚至会更大。

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