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Origin of the Mount Pinatubo climactic eruption cloud: Implications for volcanic hazards and atmospheric impacts

机译:皮纳图博火山高空喷发云的起源:对火山危害和大气影响的启示

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Volcanic-ash clouds can be fed by an upward-directed eruption column (Plinian column) or by elutriation from extensive pyroclastic flows (coignimbrite cloud). There is considerable uncertainty about which mechanism is dominant in large-scale eruptions. Here we analyze in a novel way a comprehensive grain-size database for pyroclastic deposits. We demonstrate that the Mount Pinatubo climactic eruption deposits were substantially derived from coignimbrite clouds, and not only by a Plinian cloud, as generally thought. Coignimbrite ash-fall deposits are much richer in breathable <10 mum ash (5-25 wt%) than pure Plinian ash at most distances from the source volcano. We also show that coignimbrite ash clouds, as at Pinatubo, are expected to be more water rich than Plinian clouds, leading to removal of more HCl prior to stratospheric injection, thereby reducing their atmospheric impact. [References: 30]
机译:火山灰云可通过向上喷发柱(普林尼柱)或通过大量火山碎屑流淘洗而得到(灰岩云)。关于哪种机制在大规模喷发中占主导地位,存在很大的不确定性。在这里,我们以新颖的方式分析了火山碎屑矿床的综合粒度数据库。我们证明了皮纳图博火山的高空喷发沉积物基本上来源于共沸云,而不仅仅是普遍认为的普林尼云。在距源火山最远的距离处,共沸岩灰分沉积物的透气性<10毫米灰分(5-25 wt%)比纯普林尼灰分丰富得多。我们还显示,与皮纳图博云一样,预计共沸烟灰云比普利尼云更富水,从而导致在平流层注入之前去除更多的HCl,从而减少了对大气的影响。 [参考:30]

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