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CO2 flux from Javanese mud volcanism

机译:来自爪哇泥火山的二氧化碳助焊剂

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Studying the quantity and origin of CO2 emitted by back-arc mud volcanoes is critical to correctly model fluid-dynamical, thermodynamical, and geochemical processes that drive their activity and to constrain their role in the global geochemical carbon cycle. We measured CO2 fluxes of the Bledug Kuwu mud volcano on the Kendeng Fold and thrust belt in the back arc of Central Java, Indonesia, using scanning remote sensing absorption spectroscopy. The data show that the expelled gas is rich in CO2 with a volume fraction of at least 16vol %. A lower limit CO2 flux of 1.4kgs(-1) (117td(-1)) was determined, in line with the CO2 flux from the Javanese mud volcano LUSI. Extrapolating these results to mud volcanism from the whole of Java suggests an order of magnitude total CO2 flux of 3ktd(-1), comparable with the expected back-arc efflux of magmatic CO2. After discussing geochemical, geological, and geophysical evidence we conclude that the source of CO2 observed at Bledug Kuwu is likely a mixture of thermogenic, biogenic, and magmatic CO2, with faulting controlling potential pathways for magmatic fluids. This study further demonstrates the merit of man-portable active remote sensing instruments for probing natural gas releases, enabling bottom-up quantification of CO2 fluxes.
机译:研究后弧泥火山发出的二氧化碳的数量和来源对于正确模拟驱动其活动的流体动力学,热力学和地球化学过程至关重要,并在全球地球化学碳循环中限制其作用。我们使用扫描遥感吸收光谱法测量了Kendeng Kuwu Mud Volcano上的Kedeng Kuwu Mud火山的Co2助焊剂,并在印度尼西亚中部Java的后弧中推力。数据显示,排出的气体富含CO 2,体积分数至少为16Vol%。测定了1.4kgs(-1)(-1)(117TD(-1))的下限CO 2(117TD(-1)),与爪哇泥泥火山LUSI的CO2通量一致。将这些结果从整个Java推断到泥浆中,表明3ktd(-1)的总计CO2通量的数量级,与Magmatic Co2的预期反弧流出相当。在讨论地球化学,地质和地球物理证据之后,我们得出结论,在Bledug Kuwu观察到的CO2来源可能是热生物,生物和岩浆CO2的混合物,具有用于岩浆液的潜在途径的误差。本研究进一步展示了用于探测天然气释放的人便携式活性遥感仪器的优点,使得能够自下而上的CO 2通量的定量。

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