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Modification of cirrus clouds to reduce global warming

机译:卷云的修改以减少全球变暖

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Greenhouse gases and cirrus clouds regulate outgoing longwave radiation (OLR) and cirrus cloud coverage is predicted to be sensitive to the ice fall speed which depends on ice crystal size. The higher the cirrus, the greater their impact is on OLR. Thus by changing ice crystal size in the coldest cirrus, OLR and climate might be modified. Fortunately the coldest cirrus have the highest ice supersaturation due to the dominance of homogeneous freezing nucleation. Seeding such cirrus with very efficient heterogeneous ice nuclei should produce larger ice crystals due to vapor competition effects, thus increasing OLR and surface cooling. Preliminary estimates of this global net cloud forcing are more negative than ?2.8?W?m?2 and could neutralize the radiative forcing due to a CO2 doubling (3.7?W?m?2). A potential delivery mechanism for the seeding material is already in place: the airline industry. Since seeding aerosol residence times in the troposphere are relatively short, the climate might return to its normal state within months after stopping the geoengineering experiment. The main known drawback to this approach is that it would not stop ocean acidification. It does not have many of the drawbacks that stratospheric injection of sulfur species has.
机译:温室气体和卷云调节出射的长波辐射(OLR),并且卷云的覆盖范围预计对落冰速度敏感,而落冰速度取决于冰晶大小。卷云越高,它们对OLR的影响越大。因此,通过改变最冷卷云的冰晶大小,可以改变OLR和气候。幸运的是,由于均匀冻结成核的优势,最冷的卷云具有最高的冰过饱和度。由于蒸气竞争效应,用非常有效的非均质冰核播种这种卷云会产生更大的冰晶,从而增加了OLR和表面冷却。对这一全球净云强迫的初步估计要比?2.8?W?m?2更大,并且可能会由于CO2加倍(3.7?W?m?2)而抵消辐射强迫。种子材料的潜在交付机制已经到位:航空业。由于种子在对流层的气溶胶停留时间相对较短,因此在停止地球工程实验后的几个月内,气候可能会恢复到正常状态。这种方法的主要已知缺点是它不会阻止海洋酸化。平流层注入硫不具有许多缺点。

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