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The fate of meteoric metals in ice particles: Effects of sublimation and energetic particle bombardment

机译:冰颗粒中的气象金属的命运:升华和能量粒子轰击的影响

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摘要

The uptake and potential reactivity of metal atoms on water ice can be an important process in planetary atmospheres and on icy bodies in the interplanetary and interstellar medium. For instance, metal atom uptake affects the gas-phase chemistry of the Earths mesosphere, and has been proposed to influence the agglomeration of matter into planets in protoplanetary disks. In this study the fate of Mg and K atoms incorporated into water-ice films, prepared under ultra-high vacuum conditions at temperatures of 110-140 K, was investigated. Temperature-programmed desorption experiments reveal that Mg- and K-containing species do not co-desorb when the ice sublimates, demonstrating that uptake on ice particles causes irreversible removal of the metals from the gas phase. This implies that uptake on ice particles in terrestrial polar mesospheric clouds accelerates the formation of large meteoric smoke particles (>= 1 nm radius above 80 km) following sublimation of the ice. Energetic sputtering of metal-dosed ice layers by 500 eV Ar+ and Kr+ ions shows that whereas K reacts on (or within) the ice surface to form KOH, adsorbed Mg atoms are chemically inert. These experimental results are consistent with electronic structure calculations of the metals bound to an ice surface, where theoretical adsorption energies on ice are calculated to be -68 kJ mol(-1) for K, -91 kJ mol(-1) for Mg, and -306 kJ mol(-1) for Fe. K can also insert into a surface H2O to produce KOH and a dangling H atom, in a reaction that is slightly exothermic.
机译:水冰上金属原子的摄取和潜在反应性可以是行星氛围和行星型和星际介质中冰冷的体的重要过程。例如,金属原子摄取会影响地球叶片的气​​相化学,并且已经提出将物质集聚到原生型障碍物中的行星中。在该研究中,研究了在110-140k温度下在110-140k温度下在超高真空条件下制备的水冰膜中的Mg和K原子的命运。温度编程的解吸实验表明,当冰升华酸辛酸辛酸辛酸辛酸辛均产生时,含Mg和含钾物质不会共解吸,证明冰颗粒的摄取导致不可逆地从气相中除去金属。这意味着在冰升冰后加速陆地态度云中的冰颗粒的摄取加速了大型烟雾颗粒(> = 1nm半径以上)的形成。通过500eV AR +和KR +离子的精力溅射金属浸泡层表明,k在冰面上反应形成KOH的冰面反应,吸附的Mg原子是化学惰性的。这些实验结果与与冰面结合的金属的电子结构计算一致,其中冰上的理论吸附能量为-68 kJ摩尔(-1),适用于mg, FE的-306 kJ mol(-1)。 K还可以插入表面H 2 O以产生KOH和悬空H原子,在稍微放热的反应中。

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