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Mineralogical and Chemical Investigations of the Amguid Crater (Algeria): Is there Evidence on an Impact Origin?

机译:Amguid Crater(阿尔及利亚)的矿物学和化学研究:有关于影响的证据吗?

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Mineralogical and chemical investigations were carried out on intra-craterial bedrocks (Lower Devonian sandstone) and regolithic residual soil deposits present around the Amguid structure, to discuss the hypothesis of its formation through a relatively recent (about 0.1 Ma) impact event. Observations with an optical microscope on intra-craterial rocks do not unequivocally confirm the presence of impact correlated microscopic planar deformation features (PDFs) in quartz crystals. Field observations, and optical and instrumental analysis (Raman spectroscopy) on rocks and soils (including different granulometric fractions) do not provide any incontrovertible pieces of evidence of high energy impact effects or products of impact (e.g., high pressure—temperature phases, partially or totally melted materials, etc.) either in target rocks or in soils. A series of selected main and trace elements (Al, Fe, Mg, Ni, Co and Cu) were analysed on rocks and soils to evaluate the presence in these materials of extraterrestrial sources. Comparative chemical data on rocks and soils suggest that these last are significantly enriched in Fe-poor Mg-rich materials, and in Co, Ni and Cu, in the order. A large number of EDAX-SEM analyses on separated soil magnetic particles indicate an abnormally high presence of Al-free Mg-rich sub-spherical or drop-like silicate particles, showing very similar bulk chemistries compatible with forsterite olivine. Some particles were found associated with a Ni-rich iron metal phase, and this association suggests a specific extraterrestrial origin for them. Electron microscope analysis made on a large number of soil magnetic particles indicates that 98% of them are terrestrial phases (almandine garnet, tourmaline and Fe-oxides, in abundance order), whereas, only a few grains are of questionable origin. One of the Mg-rich silicate particles was found to be a forsterite (Mg = 0.86) Mn-rich (MnO: 0.23%) Cr-free olivine, almost surely of extraterrestrial sources. Electron microprobe analysis of three soil particles allowed identification of uncommon Cr-rich (Cr 2 O 3 about 8%) spinels, poorly compatible with an origin from terrestrial sources, and in particular from local source rocks. We propose a specific extraterrestrial origin for sub-spherical olivine particles characterised by quite similar magnesian character. Excluding any derivation of these particles from interplanetary dust, two other possible extraterrestrial sources should be considered for them, i.e., either normal micrometeorite fluxes or strongly un-equilibrated, or the Vigarano type Carbonaceous (CV) chondrite meteorite material. In this case, further studies will confirm an impact origin for Amguid, as such magnesian olivine components found in soils might represent the only remnants of a vaporised projectile of ordinary non-equilibrated meteoritic composition.
机译:在Amguid结构周围存在的局部分型基岩(下牧师砂岩)和石油沉积土壤沉积物上进行了矿物学和化学研究,以通过相对近期(约0.1MA)的影响事件讨论其形成的假设。用轨道内岩石上的光学显微镜观察不会明确地确认在石英晶体中存在冲击相关的显微镜平面变形特征(PDF)。岩石和土壤(包括不同粒度分数)上的场观察和光学和仪器分析(拉曼光谱)不提供任何可爱的缺乏的缺点,即高能量冲击效应或抗冲突产品(例如,高压 - 温度相,部分或完全熔化的材料等)在目标岩石中或土壤中。分析了一系列所选的主要和微量元素(Al,Fe,Mg,Ni,Co和Co),以评估这些外星物源材料的存在。岩石和土壤上的比较化学数据表明,这些上最后富含Fe贫硅富含Mg的材料和CO,Ni和Cu的富集。在分离的土壤磁性颗粒上的大量edax-sem分析表明富含富含铝镁的亚球形或滴状硅酸盐颗粒的异常高存在,显示出与Forsterite Olivine相容的非常相似的散装化学品。发现一些颗粒与富含Ni的铁金属相相关,该关联表明它们的特异性外星起源。在大量土壤磁性颗粒上进行的电子显微镜分析表明,其中98%是陆阶段(Almandine Garnet,Tourmaline和Fe-oxides,丰富的顺序),而只有少数谷物是可疑的。发现富含Mg的硅酸盐颗粒之一是Forsterite(Mg = 0.86)富含的(MNO:0.23%)无菌橄榄石,几乎肯定是外星源。三种土壤颗粒的电子微探测分析允许鉴定富含富含Cr的(Cr 2 O 3约8%)尖晶石,与来自地面源的起源相容,特别是来自局部源岩石的尖晶差。我们提出了一种特异性的异天来源,用于亚球形橄榄石颗粒,其特征在于相似的镁特征。不包括这些颗粒的常规粉尘的任何衍生,应该考虑另外两种可能的外星源,即正常的微晶体助熔剂或强不平衡的,或者维拉诺型碳质(CV)含硼沸石陨石材料。在这种情况下,进一步的研究将确认Amguid的影响,因为土壤中发现的这种镁橄榄石组分可能代表普通非平衡常规组合物的蒸发射弹的唯一残余物。

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