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Halogen chemistry reduces tropospheric O3 radiative forcing

机译:卤素化学减少了对流层O3辐射强制

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Tropospheric ozone (O3) is a global warming gas, but the lack of a firm observational record since the preindustrial period means that estimates of its radiative forcing (RFTO3) rely on model calculations. Recent observational evidence shows that halogens are pervasive in the troposphere and need to be represented in chemistry-transport models for an accurate simulation of present-day O3. Using the GEOS-Chem model we show that tropospheric halogen chemistry is likely more active in the present day than in the preindustrial. This is due to increased oceanic iodine emissions driven by increased surface O3, higher anthropogenic emissions of bromo-carbons, and an increased flux of bromine from the stratosphere. We calculate preindustrial to present-day increases in the tropospheric O3 burden of 113?Tg without halogens but only 90?Tg with, leading to a reduction in RFTO3 from 0.43 to 0.35?Wm?2. We attribute ?~?50?% of this reduction to increased bromine flux from the stratosphere, ?~?35?% to the ocean–atmosphere iodine feedback, and ?~?15?% to increased tropospheric sources of anthropogenic halogens. This reduction of tropospheric O3 radiative forcing due to halogens (0.087?Wm?2) is greater than that from the radiative forcing of stratospheric O3 (~?0.05?Wm?2). Estimates of RFTO3 that fail to consider halogen chemistry are likely overestimates (~?25?%).
机译:Troposheric Ozone(O3)是全球变暖气体,但由于预生产期间,缺乏公司的观测记录,这意味着其辐射强制(RFTO3)依赖于模型计算的估计。最近的观察证据表明,卤素在对流层中普遍存在,需要在化学传输模型中表示,以准确模拟现今O3。使用Geos-Chem模型,我们表明,对流层卤素化学在本日可能比预工业更活跃。这是由于随着表面O3增加,溴 - 碳的更高的人为排放以及来自平流层的溴的助焊剂增加,这是由于海洋碘排放量增加。我们计算出在113?Tg的对流层O3负荷的当今日期增加,而没有卤素,但只有90?TG,导致RFTO3减少0.43至0.35?2。我们归因于〜50?%的减少与平流层增加的溴通量增加,〜?35?%到海洋气氛碘反馈,〜?15?%增加了人为卤素的对流层来源。由于卤素(0.087?Wm≤2),对流层O3辐射强制的这种降低大于流程图O3的辐射强制(〜0.05?2)。未考虑卤素化学的RFTO3的估计可能高估(〜25?%)。

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