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Magmatic events can produce rapid changes in hydrothermal vent chemistry

机译:岩浆事件可引起热液喷口化学成分的快速变化

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The Endeavour segment of the Juan de Fuca ridge is host to one of the most vigorous hydrothermal areas found on the global mid-ocean-ridge system, with five separate vent fields located within 15 km along the top of the ridge segment(1). Over the past decade, the largest of these vent fields(2), the 'Main Endeavour Field', has exhibited a constant spatial gradient in temperature and chloride concentration in its vent fluids, apparently driven by differences in the nature and extent of subsurface phase separation(3). This stable situation was disturbed on 8 June 1999 by an earthquake swarm(4). Owing to the nature of the seismic signals and the lack of new lava flows observed in the area during subsequent dives of the Alvin and Jason submersibles (August-September 1999), the event was interpreted to be tectonic in nature(4). Here we show that chemical data from hydrothermal fluid samples collected in September 1999 and June 2000 strongly suggest that the event was instead volcanic in origin. Volatile data from this event and an earlier one at 9degreesN on the East Pacific Rise show that such magmatic events can have profound and rapid effects on fluid-mineral equilibria, phase separation, He-3/heat ratios and fluxes of volatiles from submarine hydrothermal systems. [References: 30]
机译:胡安·德富卡山脊的奋进段是全球中洋海岭系统上最活跃的热液区之一,在山脊段顶部15公里以内有五个独立的喷口区(1)。在过去的十年中,这些最大的排放场(2)“主要努力场”在其排放流体中表现出恒定的温度梯度和氯浓度空间梯度,这显然是由地下相的性质和程度差异驱动的。分离(3)。 1999年6月8日,地震群扰乱了这种稳定的局势(4)。由于地震信号的性质以及随后在Alvin和Jason潜水器下潜期间(1999年8月至9月)在该地区观测不到新的熔岩流,该事件被解释为自然构造(4)。在这里,我们显示,从1999年9月和2000年6月收集的热液样品中获得的化学数据强烈表明,该事件起源于火山。该事件的挥发性数据和东太平洋上升9°N处的较早数据表明,此类岩浆事件可对海底热液系统的流体-矿物平衡,相分离,He-3 /热比和挥发性通量产生深远而快速的影响。 。 [参考:30]

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