首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Insights into the formation of rock varnish in prevailing dusty regions
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Insights into the formation of rock varnish in prevailing dusty regions

机译:深入了解尘土飞扬地区岩石清漆的形成

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The characteristics of rock varnish from the Campo de Piedra Pomez (CPP, Andes Argentina) provides new insights into the development of rock varnish under severe dusty conditions. The CPP varnish has been analysed using SEM-EDAX and Raman techniques. The rock coating is tens of microns in thickness and under the microscope shows a micro to cryptocrystalline appearance and a general granular texture. Silica (quartz, cristobalite and amorphous silica) is the main phase forming these coverings followed by Al, K and Na compounds. Minor Fe oxides and Mn oxides are the source for the orange (Fe) and brown (Fe and Mn) hues of the coating. The results obtained for the CPP coating show that desert varnish developed under dusty circumstances does not have the appearance of typical rock varnish. Textural characteristics include high crystallinity and granular arrangement of the components. Moreover the absence of typical microlaminations is related to the presence of aeolian mineral grains which inhibit their development. The main mechanism of formation of rock varnish under such environmental circumstances is the direct incorporation of aeolian mineral grains into the varnish. However, other physicochemical processes are also required to explain the formation of varnish components such as amorphous silica or iron oxides phases. Although the development of the desert varnish may act as a protector of the underlying pyroclastic rock, the extreme and persistent windy conditions in the CPP field are high enough to weather and erode not only the rock coating but also the original ignimbrite. As other warm desert sites on Earth, the CPP area can also be considered as possible terrestrial analogue to Mars. Some environmental attributes might be similar to those expected on the Martian surface and thus, textural similarities between the CPP varnish and the rock varnish-like coating of Mars are likely. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:Campo de Piedra Pomez(CPP,阿根廷安第斯山脉)的岩石清漆的特性为在严重尘土飞扬的条件下开发岩石清漆提供了新的见解。已使用SEM-EDAX和拉曼技术分析了CPP清漆。岩石涂层的厚度为几十微米,并且在显微镜下显示出从微晶体到隐晶的外观以及大致的颗粒质地。二氧化硅(石英,方石英和无定形二氧化硅)是形成这些覆盖层的主要相,然后是Al,K和Na化合物。少量的Fe氧化物和Mn氧化物是涂料中橙色(Fe)和棕色(Fe和Mn)色相的来源。 CPP涂层获得的结果表明,在多尘环境下开发的沙漠清漆没有典型的岩石清漆外观。纹理特征包括高结晶度和组分的颗粒排列。而且,不存在典型的微层压体与风沙矿物颗粒的存在有关,风砂矿物颗粒抑制了它们的发展。在这种环境条件下形成岩石清漆的主要机理是将风沙矿物颗粒直接掺入清漆中。但是,还需要其他物理化学方法来解释清漆成分的形成,例如无定形二氧化硅或氧化铁相。尽管沙漠清漆的发展可能是潜在的火山碎屑岩的保护者,但是CPP领域的极端和持续的大风条件足以抵御和侵蚀岩石涂层,甚至侵蚀原始的火成岩。如同地球上其他温暖的沙漠地带一样,CPP地区也可以被认为是火星的陆地类似物。一些环境属性可能与火星表面上预期的属性类似,因此CPP清漆和火星的岩石清漆状涂层之间的结构相似性很可能。版权所有(c)2014 John Wiley&Sons,Ltd.

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