Carbon Cycle Instability for High-CO2 Exoplanets: Implications for Habitability

被引:1
作者
Graham, R. J. [1 ]
Pierrehumbert, R. T. [2 ]
机构
[1] Univ Chicago, Dept Geophys Sci, 5734 S Ellis Ave, Chicago, IL 60637 USA
[2] Univ Oxford, Dept Atmospher Ocean & Planetary Phys, Clarendon Lab, Parks Rd Oxford, Oxford OX1 3PU, England
关键词
OCEAN HEAT-TRANSPORT; DISSOLUTION KINETICS; TERRESTRIAL PLANETS; HYDROLOGICAL CYCLE; ATMOSPHERIC CO2; INNER EDGE; ISOTOPIC COMPOSITION; CLIMATE SENSITIVITY; LIQUID WATER; GLOBAL LAND;
D O I
10.3847/1538-4357/ad45fb
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Implicit in the definition of the classical circumstellar habitable zone (HZ) is the hypothesis that the carbonate-silicate cycle can maintain clement climates on exoplanets with land and surface water across a range of instellations by adjusting atmospheric CO2 partial pressure (pCO(2)). This hypothesis is made by analogy to the Earth system, but it is an open question whether silicate weathering can stabilize climate on planets in the outer reaches of the HZ, where instellations are lower than those received by even the Archean Earth and CO2 is thought likely to dominate atmospheres. Since weathering products are carried from land to ocean by the action of water, silicate weathering is intimately coupled to the hydrologic cycle, which intensifies with hotter temperatures under Earth-like conditions. Here, we use global climate model simulations to demonstrate that the hydrologic cycle responds counterintuitively to changes in climate on planets with CO2-H2O atmospheres at low instellations and high pCO(2), with global evaporation and precipitation decreasing as pCO(2) and temperatures increase at a given instellation. Within the Maher & Chamberlain (or MAC) weathering formulation, weathering then decreases with increasing pCO(2) for a range of instellations and pCO(2) typical of the outer reaches of the HZ, resulting in an unstable carbon cycle that may lead to either runaway CO2 accumulation or depletion of CO2 to colder (possibly snowball) conditions. While the behavior of the system has not been completely mapped out, the results suggest that silicate weathering could fail to maintain habitable conditions in the outer reaches of the nominal HZ.
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页数:18
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