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Tropical rainforest response to marine sky brightening climate engineering

机译:热带雨林应对海洋天空增亮的气候工程

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摘要

Tropical forests represent a major atmospheric carbon dioxide sink. Here the gross primary productivity (GPP) response of tropical rainforests to climate engineering via marine sky brightening under a future scenario is investigated in three Earth system models. The model response is diverse, and in two of the three models, the tropical GPP shows a decrease from the marine sky brightening climate engineering. Partial correlation analysis indicates precipitation to be important in one of those models, while precipitation and temperature are limiting factors in the other. One model experiences a reversal of its Amazon dieback under marine sky brightening. There, the strongest partial correlation of GPP is to temperature and incoming solar radiation at the surface. Carbon fertilization provides a higher future tropical rainforest GPP overall, both with and without climate engineering. Salt damage to plants and soils could be an important aspect of marine sky brightening. ©2015. American Geophysical Union. All Rights Reserved.
机译:热带森林是大气中主要的二氧化碳汇。在这里,在三种地球系统模型中研究了热带雨林在未来情况下通过海洋天空增亮对气候工程的总初级生产力(GPP)响应。模型的响应是多种多样的,并且在三个模型中的两个中,热带GPP显示从海洋天空变亮的气候工程中减少。偏相关分析表明,降水在其中一个模型中很重要,而降水和温度是另一个模型中的限制因素。一个模型在海洋天空变亮的情况下经历了亚马逊消亡的逆转。那里,GPP最强的部分相关性是与表面的温度和入射太阳辐射有关。不论是否进行气候工程,碳肥都能为未来的热带雨林提供更高的GPP。盐对植物和土壤的损害可能是海洋天空变亮的重要方面。 ©2015。美国地球物理联合会。版权所有。

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