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A review of natural aerosol interactions and feedbacks within the Earth system

机译:地球系统内自然气溶胶互动及反馈综述

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The natural environment is a major source of atmospheric aerosols, including dust, secondary organic material from terrestrial biogenic emissions, carbonaceous particles from wildfires, and sulphate from marine phytoplankton dimethyl sulphide emissions. These aerosols also have a significant effect on many components of the Earth system such as the atmospheric radiative balance and photosynthetically available radiation entering the biosphere, the supply of nutrients to the ocean, and the albedo of snow and ice. The physical and biological systems that produce these aerosols can be highly susceptible to modification due to climate change so there is the potential for important climate feedbacks. We review the impact of these natural systems on atmospheric aerosol based on observations and models, including the potential for long term changes in emissions and the feedbacks on climate. The number of drivers of change is very large and the various systems are strongly coupled. There have therefore been very few studies that integrate the various effects to estimate climate feedback factors. Nevertheless, available observations and model studies suggest that the regional radiative perturbations are potentially several Watts per square metre due to changes in these natural aerosol emissions in a future climate. Taking into account only the direct radiative effect of changes in the atmospheric burden of natural aerosols, and neglecting potentially large effects on other parts of the Earth system, a global mean radiative perturbation approaching 1 W m2 is possible by the end of the century. The level of scientific understanding of the climate drivers, interactions and impacts is very low.
机译:自然环境是大气气溶胶的主要来源,包括来自陆地生物发射的灰尘,次级有机物,来自野火的碳质颗粒,以及来自海洋浮游植物二甲基硫化物排放的硫酸盐。这些气溶胶对地球系统的许多部件具有显着影响,例如大气辐射平衡和进入生物圈的光合可用的辐射,对海洋供应营养,以及冰雪和冰的玻璃杯。由于气候变化,产生这些气溶胶的物理和生物系统可以高易受改性的影响,因此具有重要的气候反馈可能性。我们根据观察和模型审查了这些天然系统对大气气溶胶的影响,包括减排的长期变化和对气候反馈的可能性。变化驱动程序的数量非常大,各种系统都是强烈耦合的。因此,很少有研究,可以整合各种效果来估计气候反馈因素。然而,可用的观察和模型研究表明,由于这些天然气溶胶排放在未来的气候中的变化,区域辐射扰动可能是每平方米的几个瓦特。仅考虑到天然气溶胶大气负担的直接辐射效果,忽略了地球系统其他部位的潜在大量影响,在本世纪末可能是一个全球平均辐射扰动1 W M2。对气候司机,互动和影响的科学理解水平非常低。

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