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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Investigating the origin of anorthitic plagioclase through a combination of experiments and natural observations
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Investigating the origin of anorthitic plagioclase through a combination of experiments and natural observations

机译:通过实验和自然观察相结合的方法研究厌食斜长石的起源

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The origin of anorthitic plagioclase in volcanic rocks worldwide remains an enigma. Arenal volcano, Costa Rica, provides a good example of the problem: up to An_(96) plagioclase are found within moderately evolved basaltic andesites. We follow up a recent suggestion [Lundstrom, C.C., Boudreau, A., Pertermann, M., 2005. Diffusion-reaction in a thermal gradient: Implications for the genesis of anorthitic plagioclase, high alumina basalt and igneous mineral layering. Earth Planet. Sci. Lett. 237, 829-854] that diffusion-reaction processes occurring between ascending magmas and gabbroic wall rocks might provide a means of producing anorthitic plagioclase without requiring exotic, ultra-calcic melt compositions by integrating observations from three analytical methods: (1) laboratory diffusion-reaction experiments in the diopside-albite-anorthite (DAA) system; (2) transmission electron microscopy (TEM) of plagioclase grains from both a diffusion-reaction experiment and an Arenal lava; and (3) Sr isotope microstratigraphy of phenocrysts and megacrysts from natural lavas from the current eruption at Arenal. Two plagioclase saturated DAA melts, juxtaposed in experiments at either 1 bar pressure (anhydrous) or at 0.5 GPa pressure (hydrous) for 3-5 days at 1244 or 1125 ℃, illustrate the dramatic effect of H_2O on facilitating plagioclase reaction. In the presence of wet melt, enrichment in anorthitic plagioclase occurs at the material interface while in the presence of the dry 1 bar melt, plagioclase shows no reaction. TEM analyses of a homogeneous anorthitic plagioclase from a diffusion-reaction experiment indicates heterogeneous columns of more anorthite-rich plagioclase at the < 100 nm scale while a homogeneous anorthitic plagioclase phenocryst from a 1968 lava from Arenal found much of the crystal to be composed of 20-50 μm diameter subgrains, having ~1 μm diameter tubes filled with Fe, K, Si-rich glass. Large core-rim variations in ~(87)Sr/~(86)Sr occur within three plagioclase phenocrysts from both 1968 and 1999 Arenal lavas. Although core compositions vary widely (0.7038-0.7052), all three phenocrysts have similar ~(87)Sr/~(86)Sr rim compositions (0.7043). The variability in ~(87)Sr/~(86)Sr at the phenocryst scale but homogeneity in ~(87)Sr/~(86)Sr at the bulk scale in Arenal lavas [Ryder, C.H., Gill, J.B., Tepley III, F.J., Ramos, F., Reagan, M., this volume. Closed to open differentiation at Arenal volcano (1968-2003). J. Volcanol. Geotherm. Res.] could be explained by erupted lavas representing a near steady state balance between ascending magmas and a flux derived from diffusion-reaction processes occurring with surrounding crustal gabbros.
机译:全世界火山岩中斜生斜长石的起源仍然是一个谜。哥斯达黎加的阿雷纳尔火山提供了一个很好的例子:在中等程度演化的玄武安山岩中发现了多达An_(96)斜长石。我们遵循了最近的建议[Lundstrom,C.C.,Boudreau,A.,Pertermann,M.,2005。在热梯度中的扩散反应:对无斜长石斜长石,高铝玄武岩和火成岩矿物成因的影响。地球行星。科学来吧237,829-854],通过整合三种分析方法的观察结果,在上升的岩浆和辉长岩壁之间发生的扩散反应过程可能提供了一种产生无斜斜长石的方法,而无需奇特的超钙熔体成分:(1)透辉石-无水煤灰石(DAA)系统中的反应实验; (2)来自扩散反应实验和阿雷纳尔熔岩的斜长石晶粒的透射电子显微镜(TEM); (3)阿雷纳尔火山喷发产生的天然熔岩的隐晶和大晶的Sr同位素显微地层。在实验中,在1bar压力(无水)或0.5 GPa压力(含水)下在1244或1125℃下并置了2个斜长石饱和的DAA熔体,说明了H_2O对促进斜长石酶反应的显著作用。在存在湿熔体的情况下,在材料界面处发生了杂苯斜长石的富集,而在干燥的1 bar熔体的存在下,斜长石没有反应。通过扩散反应实验对均质杂化斜生石长石的TEM分析表明,在<100 nm规模上,富含富钙长石斜生石长石的异质柱,而来自阿雷纳尔(1968)的熔岩的均质杂齿长石斜生石现象发现大部分晶体由20组成。直径为-50μm的亚晶粒,具有〜1μm直径的管子,里面装有富含Fe,K,Si的玻璃。 〜(87)Sr /〜(86)Sr的大的核心-边缘变化发生在1968年和1999年的阿雷纳尔熔岩的三个斜长石隐晶内。尽管核心成分变化很大(0.7038-0.7052),但所有三种现象都具有相似的〜(87)Sr /〜(86)Sr边缘组成(0.7043)。阿雷纳尔火山熔岩中〜(87)Sr /〜(86)Sr在单晶尺度上的变异性,而〜(87)Sr /〜(86)Sr在整体尺度上的均一性[Ryder,CH,Gill,JB,Tepley III ,FJ,Ramos,F。,里根,M。,此卷。在阿雷纳尔火山(1968-2003年)关闭开放分化。 J.火山地热。 [Res。]可以用熔岩喷发来解释,熔岩代表着上升的岩浆和由周围地壳辉长岩发生的扩散反应过程产生的通量之间的近似稳态平衡。

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