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Experimental phase equilibria constraints on pre-eruptive storage conditions of the Soufriere Hills magma

机译:Soufriere Hills岩浆喷发前储藏条件的实验阶段平衡约束

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New experimental results are used to constrain the P, T, X(H2O) conditions of the Soufriere Hills magma prior to ascent and eruption. The experiments were performed on a powdered andesite erupted in January, 1996, at an fO(2) corresponding to similar to NNO+1 with P-H2O and temperatures in the range 50 to 200 MPa and 800 to 940 degrees C. Amphibole is stable at P-H2O >115 MPa and temperatures <875 degrees C. Quartz only becomes stable at low temperatures and after high degrees of crystallization (T <840 degrees C, >72 wt% SiO2 in residual melt) at P-H2O >115 MPa. Analyses of rhyolitic glass inclusions in quartz and plagioclase from recently erupted samples indicate melt water contents of 4.27 +/- 0.54 wt% H2O and CO2 contents <60 ppm. The evolved Soufriere Hills magma would therefore be H2O-saturated at pressures <130 MPa. These results suggest that the Soufriere Hills magma containing the stable assemblage amphibole, quartz, plagioclase, orthopyroxene, magnetite and ilmenite was stored at P-H2O of 115-130 MPa, equivalent to a minimum depth for a water-saturated magma chamber of 5-6 km depth. Magma temperatures were initially low (820-840 degrees C). Quartz is believed to have been destabilised by a heating event involving injection of new basaltic magma. The stability field of hornblende provides a useful upper limit (similar to 880 degrees C) for the extent of this reheating. [References: 9]
机译:新的实验结果被用来约束上升和喷发之前Soufriere Hills岩浆的P,T,X(H2O)条件。实验是在1996年1月喷出的安山岩粉末上进行的,其fO(2)对应于类似于NNO + 1的P-H2O,温度范围为50至200 MPa和800至940摄氏度。闪石是稳定的在P-H2O> 115 MPa和温度<875°C时。石英仅在低温和高结晶度(T <840°C,残余熔体中> 72 wt%SiO2)后才稳定,而P-H2O> 115 MPa 。对最近喷出的样品中石英和斜长石中流纹玻璃夹杂物的分析表明,熔融水含量为4.27 +/- 0.54 wt%H2O,CO2含量<60 ppm。因此,演化后的Soufriere Hills岩浆将在<130 MPa的压力下被H2O饱和。这些结果表明,含有稳定组合闪石,石英,斜长石,邻辉石,磁铁矿和钛铁矿的Soufriere Hills岩浆在115-130 MPa的P-H2O下储存,等于水饱和岩浆室最小深度为5-深度6公里。岩浆温度最初很低(820-840摄氏度)。人们认为,由于注入新的玄武岩浆的加热事件使石英不稳定。角闪石的稳定性场为这种再热程度提供了一个有用的上限(类似于880摄氏度)。 [参考:9]

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