论文标题
影响火星上甲烷的大气过程
Atmospheric processes affecting methane on Mars
论文作者
论文摘要
目前尚不确定甲烷是否存在于火星上。来自好奇心流动站的数据表明,背景甲烷浓度为十亿分之十,而来自痕量气轨道的数据表明,每万亿二十个零件的上限。如果甲烷存在于火星上,那么我们将不完全理解影响其寿命的物理和化学过程。与早期观察结果相比,大气模型表明,一生中过度估量约为六百个。在目前的工作中,我们假设好奇的流动站背景甲烷值,并估计大气化学和混合过程的不确定性1d Terra。结果表明,这些过程只能解释甲烷寿命降低约16个因素。这意味着,如果存在甲烷,则需要其他未知过程来解释观察到的寿命。
It is currently uncertain as to whether methane exists on Mars. Data from the Curiosity Rover suggests a background methane concentration of a few tenths parts per billion whereas data from the Trace Gas Orbiter suggest an upper limit of twenty parts per trillion. If methane exists on Mars then we do not understand fully the physical and chemical processes affecting its lifetime. Atmospheric models suggest an over-estimate in the lifetime by a factor of around six hundred compared with earlier observations. In the present work we assume the Curiosity Rover background methane value and estimate the uncertainty in atmospheric chemistry and mixing processes in our atmospheric column model 1D TERRA. Results suggest that these processes can only explain a factor of ~sixteen lowering in the methane lifetime. This implies that if methane is present then additional, currently unknown processes are required to explain the observed lifetime.