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Large methane releases lead to strong aerosol forcing and reduced cloudiness

机译:大型甲烷释放导致强烈的气溶胶强迫和减少浑浊

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The release of vast quantities of methane into the atmosphere as a result of clathrate destabilization is a potential mechanism for rapid amplification of global warming. Previous studies have calculated the enhanced warming based mainly on the radiative effect of the methane itself, with smaller contributions from the associated carbon dioxide or ozone increases. Here, we study the effect of strongly elevated methane (CH4) levels on oxidant and aerosol particle concentrations using a combination of chemistry-transport and general circulation models. A 10-fold increase in methane concentrations is predicted to significantly decrease hydroxyl radical (OH) concentrations, while moderately increasing ozone (O3). These changes lead to a 70 % increase in the atmospheric lifetime of methane, and an 18 % decrease in global mean cloud droplet number concentrations (CDNC). The CDNC change causes a radiative forcing that is comparable in magnitude to the longwave radiative forcing ("enhanced greenhouse effect") of the added methane. Together, the indirect CH4-O3 and CH4-OH-aerosol forcings could more than double the warming effect of large methane increases. Our findings may help explain the anomalously large temperature changes associated with historic methane releases.
机译:由于克拉内特稳定化而导致大量甲烷的释放成为大气中的大气中的潜在机制,用于快速扩增全球变暖。以前的研究已经计算出基于增强的升温,主要是甲烷本身的辐射效果,具有来自相关二氧化碳或臭氧的较小贡献。在这里,我们使用化学传输和一般循环模型的组合研究强烈升高的甲烷(CH4)水平对氧化剂和气溶胶颗粒浓度的影响。预测甲烷浓度的10倍升高,以显着降低羟基自由基(OH)浓度,而中度增加臭氧(O3)。这些变化导致甲烷的大气寿命增加70%,全球平均云液滴数浓度(CDNC)降低了18%。 CDNC变化导致辐射强制,其幅度相当于添加的甲烷的长波辐射强制(“增强温室效应”)。间接CH 4-O3和CH4-OH-气溶胶强制上的间接CH 4-O3和CH4-OH-气溶胶强制性越来越多,大甲烷的变暖效果增加。我们的研究结果可能有助于解释与历史甲烷释放相关的异常大的温度变化。

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