首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Procida volcanic history: new insights into the evolution of the Phlegraean Volcanic District (Campania region, Italy)
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Procida volcanic history: new insights into the evolution of the Phlegraean Volcanic District (Campania region, Italy)

机译:普罗奇达火山的历史:弗勒格拉火山区(意大利坎帕尼亚地区)演变的新见解

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New stratigraphic, major- and trace-element, and Sr-, Nd- and Pb-isotopic data on volcanic deposits older than 14 ka from the island of Procida, Italy, are presented and compared with published analyses from the rest of the Phlegraean Volcanic District (PVD). Procida rocks range in composition from basalt to shoshonite and trachyte and show Sr-87/Sr-86, Nd-143/Nd-144, Pb-206/Pb-204, Pb-207/Pb-204 and Pb-208/Pb-204 ratios varying within the ranges 0.70523-0.70678, 0.512539-0.512630, 18.99-19.29, 15.67-15.69 and 39.10-39.39, respectively. The presence of a compositional gap in the range SiO2=54-59 wt % is evidence of magma bimodality, and suggests that the feeding magmatic system was formed by at least two different reservoirs located at different depths. Geochemical and isotopic variations with increasing differentiation can be explained by fractional crystallization mechanisms, that in some cases were associated with crustal contamination that occurred in both deeper and shallower reservoirs; the most evolved magmas formed in the shallower one. Mixing/mingling processes also occurred. The variation of isotopic composition through time observed both for Procida and for Campi Flegrei and Ischia rocks is evidence of strong affinity between magmas that erupted on the entire PVD until about 40 ka. This indicates that they share a common origin and a common plumbing system. Most of the PVD eruptive centers active until about 40 ka lie within a NE-SW-oriented volcano-tectonic belt extending from the southeastern part of Ischia, through Procida and Torregaveta volcano to the northeastern sector of the present Campi Flegrei caldera. This not only indicates the existence of a link between regional structures and volcanism in the area, but also suggests that PVD magma genesis and evolution were strongly regulated by extensional tectonics. In the last 40 ka the mafic rocks erupted along this extensional structure-from Torregaveta and the islands of Ischia and Procida-indicate that it still represents an important crustal discontinuity that focuses mantle-derived magmas. Procida trachybasalts are enriched in large ion lithophile elements (LILE) and light and middle rare earth elements (LREE and MREE), and show slight negative anomalies in the high field strength elements (HFSE) relative to average MORB. A slight depletion in HREE is present. Trace element and isotope systematics can be referred to a lithospheric mantle source. The lithospheric mantle source carries intra-plate and slab-derived components, the latter probably inherited from a previous subduction event.
机译:提出了意大利普罗奇达岛14 ka以上火山岩沉积的新地层,主要元素和痕量元素以及Sr,Nd和Pb同位素数据,并将其与其余Phlegraean火山岩的分析结果进行了比较区(PVD)。普罗奇达(Procida)岩石的成分范围从玄武岩到白铁矿和曲折长石,显示出Sr-87 / Sr-86,Nd-143 / Nd-144,Pb-206 / Pb-204,Pb-207 / Pb-204和Pb-208 / Pb -204比分别在0.70523-0.70678、0.512539-0.512630、18.99-19.29、15.67-15.69和39.10-39.39范围内变化。 SiO 2 = 54-59wt%范围内的组成间隙的存在是岩浆双峰性的证据,并且表明进料岩浆系统由位于不同深度的至少两个不同的储层形成。随着分异结晶机制的解释,地球化学和同位素变化的差异不断增加,这在某些情况下与在较深和较浅储层中发生的地壳污染有关。演化最浅的岩浆形成在较浅的岩浆中。混合/混合过程也发生了。在Procida以及Campi Flegrei和Ischia岩石中观察到的同位素组成随时间的变化是证据,表明整个PVD上喷发到约40 ka的岩浆之间具有很强的亲和力。这表明它们具有共同的起源和共同的管道系统。大部分PVD爆发中心活动到大约40 ka为止,位于一个以NE-SW为导向的火山-构造带中,从伊斯基亚的东南部延伸,经过Procida和Torregaveta火山一直延伸到目前的Campi Flegrei破火山口的东北部。这不仅表明该地区区域结构与火山活动之间存在联系,而且表明PVD岩浆的成因和演化受到伸展构造的强烈调节。在最后的40 ka里,镁铁质岩石沿着托勒加维塔以及伊斯基亚和普罗奇达岛的延伸结构喷发,表明它仍然代表着重要的地壳间断,集中了地幔衍生的岩浆。 Procida trachybasalts富含大离子亲石元素(LILE)和轻稀土和中稀土元素(LREE和MREE),并且相对于平均MORB,高场强元素(HFSE)表现出轻微的负异常。存在HREE的轻微消耗。痕量元素和同位素系统学可以称为岩石圈地幔源。岩石圈地幔源携带板内和板状成分,后者可能是从先前的俯冲事件继承而来的。

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