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Magmatic enclaves and andesitic lavas from Mt. Lamington, Papua New Guinea : implications for recycling of earlier-fractionated minerals through magma recharge.

机译:泰山的岩浆飞地和安山岩熔岩。巴布亚新几内亚拉明顿:通过岩浆充填对早期分离的矿物进行回收的意义。

摘要

Mt. Lamington is a composite, dome-forming volcano in Papua New Guinea, sitting on the Papuan Ultramafic Belt (PUB) ophiolite. The 1951 eruption produced andesitic dome lavas with numerous basaltic–andesitic enclaves and a few PUB ultramafic xenoliths. To understand the nature of the 1951 eruption, and to assess the effect of assimilating ophiolitic crust in modifying the geochemistry of arc magmas, we carried out petrological, mineralogical and geochemical studies on andesitic lavas as well as magmatic enclaves and ultramafic inclusions. The mineralogy of the enclaves is dominated by amphibole and plagioclase, similar to the andesitic lava hosts. The textures of the enclaves vary from fine-grained diktytaxitic to coarser-grained plutonic textured. We interpret this variation to result from variable cooling rates in the enclave-forming magma body when it invades the overlying andesite. The diktytaxitic enclaves contain variable proportions of host-derived amph + plag antecrysts and xenocrysts of ol + sp ± cpx ± amph with disequilibrium textures, indicating interaction with host lava and assimilation of foreign materials, respectively. A previous study argued that the olivine xenocrysts with chromian spinel inclusions are derived from the PUB, and thus that the PUB contaminated the Mt. Lamington magmas. We demonstrate that this is highly unlikely on the basis of morphological and compositional discrepancies between PUB ol + sp, sampled in nodules, and the xenocrysts. Mass balance indicates that the high whole-rock Ni contents of enclaves and andesitic hosts can be explained by olivine incorporation and do not require any PUB involvement. The olivines are considered to represent crystal mush fractionated from precursor(s) of andesitic and/or pre-1951 shoshonitic lavas. Their presence in enclaves represents recycling of earlier-fractionated components through magma recharge. We argue that this recycling is an important and underestimated process in shaping arc magmas.
机译:公吨。 Lamington是巴布亚新几内亚的一个复合圆顶形成火山,坐落在巴布亚超镁铁质带(PUB)蛇绿岩上。 1951年的火山喷发产生了安第斯穹顶熔岩,其中有许多玄武质安第斯山脉和一些PUB超镁铁质异质岩。为了解1951年火山喷发的性质,并评估同化硬脂岩壳对改变弧形岩浆地球化学的影响,我们对安山岩熔岩,岩浆飞地和超镁铁质包裹体进行了岩石学,矿物学和地球化学研究。飞地的矿物学以闪石和斜长石为主,类似于安山岩熔岩宿主。飞地的质地从细粒双核生质到粗粒深成岩质感不等。我们将这种变化解释为是由形成飞地的岩浆体侵入上覆安山岩时冷却速度变化所导致的。二轮分类的飞地包含不同比例的宿主来源的安非他命+浮游前驱体和ol + sp±cpx±安培的异种前代,具有不平衡的质地,分别表明与宿主熔岩的相互作用和异物的同化作用。先前的研究认为,带有铬尖晶石夹杂物的橄榄石异晶来自PUB,因此PUB污染了Mt。拉明顿岩浆。我们证明,根据在结节中取样的PUB ol + sp与异种晶状体之间的形态和组成差异,这种情况极不可能发生。质量平衡表明,飞石和安山岩主体的全岩镍含量较高,可以通过橄榄石的结合来解释,不需要PUB的参与。橄榄石被认为代表了从安山和/或1951年前的肖肖尼特熔岩的前驱体中分离出的晶体糊状物。它们在飞地中的存在代表了通过岩浆充填对早期分级组分的回收。我们认为这种再循环是塑造弧形岩浆的重要且被低估的过程。

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