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Time scales of formation of zoned magma chambers: U-series disequilibria in the Fogo A and 1563 AD trachyte deposits, Sao Miguel, Azores

机译:区域性岩浆室形成的时间尺度:Fogo A和1563 AD曲奇矿床中的U系列失衡,亚速尔群岛的圣米格尔

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High precision measurements of Ra-226-Th-230-U-238 disequilibria and Ba concentrations are reported for samples from two chemically zoned trachyte deposits from Fogo volcano, Sao Miguel, Azores. High-precision U-series disequilibria measurements by plasma ionization multicollector mass spectrometry were performed on pumice lapilli and volcanic glass separates from Fogo 3 3 1563 A.D. (similar to 0.14 km(3)) and the similar to 4.7 ka Fogo A (similar to 0. 7 km(3)) deposits in order to quantify the time scales of magmatic processes. Observed (Ra-226)/Ba-(Th-230)/Ba relationships in Fogo 1563 are compatible with a conventional instantaneous fractional crystallization model and a pre-eruptive magma residence time of similar to 50 y. However, the Fogo A data cannot be explained by instantaneous fractional crystallization, and require a prolonged crystallization history. Continuous differentiation models better explain the observed Ra-226-Th-230 variations within the Fogo deposits and may be more realistic in general. Such models suggest magma residence times prior to eruption of similar to 50-80 years for Fogo 1563, and similar to 4.7 ka for the larger volume Fogo A eruption. These time scales represent liquid residence ages rather than the crystallization ages documented in most previous magmatic time scale studies, and allow constraints to be placed on the time scales necessary for the development of chemical zonation within the Fogo magma chamber. Our results indicate that calculated time scales are relatively insensitive to the precise nature of the continuous differentiation models, and further indicate that meaningful magma differentiation time scales can be obtained despite open system behavior, because the Ra-Th disequilibria are overwhelmingly controlled by feldspar fractionation. Calculated time scales are, however, extremely sensitive to D-Ra/D-Ba ratios. We therefore emphasize the crucial importance to better constrain the relative partitioning of Ra and Ba when employing Ra-Th disequilibrium data to constrain the rates and time scales of igneous processes. (c) 2007 Elsevier B.V. All rights reserved.
机译:据报道,来自亚速尔群岛圣米格尔火山的两个化学分区曲奇沉积物中的样品,对Ra-226-Th-230-U-238失衡和Ba浓度进行了高精度测量。通过等离子体电离多收集器质谱对浮石和火山玻璃分离物进行了高精度的U系列失衡测量,这些分离物来自Fogo 3 3 1563 AD(类似于0.14 km(3))和4.7 ka Fogo A(类似于0 。7 km(3))矿床,以量化岩浆作用过程的时间尺度。在Fogo 1563中观察到的(Ra-226)/ Ba-(Th-230)/ Ba关系与常规瞬时分步结晶模型和喷发前岩浆停留时间相似,约为50 y。但是,Fogo A数据无法通过瞬时分步结晶来解释,并且需要较长的结晶历史。连续微分模型可以更好地解释在Fogo矿床中观察到的Ra-226-Th-230的变化,并且总体上可能更现实。这样的模型表明,火山爆发前的岩浆停留时间与Fogo 1563相似,约为50-80年;对于较大体积的Fogo A爆发,其岩浆停留时间约为4.7 ka。这些时间尺度代表的是液体停留年龄,而不是大多数先前岩浆时间尺度研究中记录的结晶年龄,并且允许对在Fogo岩浆室内发展化学分区所必需的时间尺度施加限制。我们的结果表明,计算出来的时间尺度对连续微分模型的精确性质相对不敏感,并且进一步表明尽管存在开放系统行为,但仍可以获得有意义的岩浆分化时间尺度,因为Ra-Th失衡主要由长石分馏控制。但是,计算出的时标对D-Ra / D-Ba比率非常敏感。因此,当使用Ra-Th不平衡数据来约束火成过程的速率和时间尺度时,我们强调至关重要的是更好地约束Ra和Ba的相对分配。 (c)2007 Elsevier B.V.保留所有权利。

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