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Effects of solar radiation modification on the ocean carbon cycle:An earth system modeling study 被引量:1

Effects of solar radiation modification on the ocean carbon cycle:An earth system modeling study
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摘要 太阳辐射干预地球工程是应对气候变化的备用应急措施.其基本思路是通过减少到达大气和地表的太阳辐射,从一定程度上抵消温室效应引起的全球变暖.本研究使用地球系统模式模拟理想化太阳辐射干预方法对海洋碳循环的影响.模拟试验中,通过直接减少太阳辐射将RCP8.5 CO_(2)排放情景下的全球平均温度降低到RCP4.5情景下的温度.模拟结果表明,到2100年,相对于RCP8.5情景,减少太阳辐射通过增加陆地碳汇,使大气CO_(2)浓度降低了65 ppm.减少太阳辐射对海洋酸化影响很小.到2100年,相对于RCP8.5情景,减少太阳辐射使海表平均氢离子浓度减少6%,pH上升0.03,同时使海表平均氢离子浓度的季节变化振幅衰减约10%.模拟结果还表明,减少太阳辐射对全球海洋净初级生产力的影响较小.本研究有助于深化我们对太阳辐射干预地球工程的气候和碳循环效应的认知和综合评估. Solar radiation modification(SRM,also termed as geoengineering)has been proposed as a potential option to counteract anthropogenic warming.The underlying idea of SRM is to reduce the amount of sunlight reaching the atmosphere and surface,thus offsetting some amount of global warming.Here,the authors use an Earth system model to investigate the impact of SRM on the global carbon cycle and ocean biogeochemistry.The authors simulate the temporal evolution of global climate and the carbon cycle from the pre-industrial period to the end of this century under three scenarios:the RCP4.5 CO_(2) emission pathway,the RCP8.5 CO_(2) emission pathway,and the RCP8.5 CO_(2) emission pathway with the implementation of SRM to maintain the global mean surface temperature at the level of RCP4.5.The simulations show that SRM,by altering global climate,also affects the global carbon cycle.Compared to the RCP8.5 simulation without SRM,by the year 2100,SRM reduces atmospheric CO_(2) by 65 ppm mainly as a result of increased CO_(2) uptake by the terrestrial biosphere.However,SRM-induced change in atmospheric CO_(2) and climate has a small effect in mitigating ocean acidification.By the year 2100,relative to RCP8.5,SRM causes a decrease in surface ocean hydrogen ion concentration([H^(+)])by 6% and attenuates the seasonal amplitude of[H^(+)]by about 10%.The simulations also show that SRM has a small effect on globally integrated ocean net primary productivity relative to the high-CO_(2) simulation without SRM.This study contributes to a comprehensive assessment of the effects of SRM on both the physical climate and the global carbon cycle.
出处 《Atmospheric and Oceanic Science Letters》 CSCD 2022年第3期56-63,共8页 大气和海洋科学快报(英文版)
基金 supported by the National Natural Science Foundation of China[grant number 41975103].
关键词 太阳辐射干预 地球工程 碳循环 海洋酸化 海洋生物地球化学 Solar radiation modification Geoengineering Carbon cycle Ocean acidification Ocean biogeochemistry
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