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Titan's inventory of organic surface materials

机译:泰坦的有机表面材料库存

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摘要

Cassini RADAR observations now permit an initial assessment of the inventory of two classes, presumed to be organic, of Titan surface materials: polar lake liquids and equatorial dune sands. Several hundred lakes or seas have been observed, of which dozens are each estimated to contain more hydrocarbon liquid than the entire known oil and gas reserves on Earth. Dark dunes cover some 20% of Titan's surface, and comprise a volume of material several hundred times larger than Earth's coal reserves. Overall, however, the identified surface inventories (>3 × 104 km3 of liquid, and >2 × 105 km3 of dune sands) are small compared with estimated photochemical production on Titan over the age of the solar system. The sand volume is too large to be accounted for simply by erosion in observed river channels or ejecta from observed impact craters. The lakes are adequate in extent to buffer atmospheric methane against photolysis in the short term, but do not contain enough methane to sustain the atmosphere over geologic time. Unless frequent resupply from the interior buffers this greenhouse gas at exactly the right rate, dramatic climate change on Titan is likely in its past, present and future.
机译:Cassini RADAR观测现在可以初步评估两类假定为有机的泰坦表面物质的清单:极地湖水和赤道沙丘沙。已经观察到数百个湖泊或海洋,据估计每个湖泊或海洋包含的碳氢化合物液体比地球上所有已知的油气储量都要多。暗沙丘覆盖了土卫六的大约20%的表面,其物质体积比地球的煤炭储量大数百倍。但是,总体而言,与估计的太阳系寿命期间泰坦上的光化学产量相比,确定的地面存量(> 3×104 km3的液体和> 2×105 km3的沙丘)较小。沙粒太大,无法简单地通过观察到的河道侵蚀或观察到的撞击坑喷出来解释。这些湖泊在短期内足以缓冲大气中的甲烷以防止光解,但其甲烷含量不足以在地质时期维持大气。除非内部的频繁补给以适当的速率缓冲这种温室气体,否则土卫六的过去,现在和将来都可能发生剧烈的气候变化。

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