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Evidence for a continuous decline in lower stratospheric ozone offsetting ozone layer recovery

机译:平流层下层臭氧不断减少,抵消了臭氧层回收的证据

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Ozone forms in the Earth's atmosphere from the photodissociation of molecular oxygen, primarily in the tropical stratosphere. It is then transported to the extratropics by the Brewer–Dobson circulation (BDC), forming a protective ozone layer around the globe. Human emissions of halogen-containing ozone-depleting substances (hODSs) led to a decline in stratospheric ozone until they were banned by the Montreal Protocol, and since 1998 ozone in the upper stratosphere is rising again, likely the recovery from halogen-induced losses. Total column measurements of ozone between the Earth's surface and the top of the atmosphere indicate that the ozone layer has stopped declining across the globe, but no clear increase has been observed at latitudes between 60°?S and 60°?N outside the polar regions (60–90°). Here we report evidence from multiple satellite measurements that ozone in the lower stratosphere between 60°?S and 60°?N has indeed continued to decline since 1998. We find that, even though upper stratospheric ozone is recovering, the continuing downward trend in the lower stratosphere prevails, resulting in a downward trend in stratospheric column ozone between 60°?S and 60°?N. We find that total column ozone between 60°?S and 60°?N appears not to have decreased only because of increases in tropospheric column ozone that compensate for the stratospheric decreases. The reasons for the continued reduction of lower stratospheric ozone are not clear; models do not reproduce these trends, and thus the causes now urgently need to be established.
机译:臭氧主要通过热带平流层中分子氧的光解离而在地球大气中形成。然后将其通过Brewer-Dobson循环(BDC)输送到温带气旋,在全球范围内形成保护性的臭氧层。人为排放的含卤素消耗臭氧层物质(hODS)导致平流层臭氧减少,直到被《蒙特利尔议定书》禁止为止。自1998年以来,平流层上方的臭氧层又在上升,这很可能从卤素引起的损失中恢复。地球表面与大气层顶部之间的臭氧总柱测量表明,全球臭氧层已停止下降,但在极地地区外60°?S至60°?N的纬度上未观察到明显的增加。 (60–90°)。在这里,我们从多个卫星测量报告中得出的证据表明,自1998年以来,平流层下部低层臭氧在60°S和60°N之间的确确实继续下降。我们发现,即使平流层上部臭氧正在恢复,但臭氧的持续下降趋势平流层下部普遍存在,导致平流层柱状臭氧在60°S至60°ΔN之间呈下降趋势。我们发现,在60°S和60°N之间的总柱状臭氧似乎并没有减少,这仅是因为对流层柱状臭氧的增加补偿了平流层的减少。继续降低平流层下部臭氧的原因尚不清楚;模型不能重现这些趋势,因此迫切需要确定原因。

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