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High heat flow and ocean acidification at a nascent rift in the northern Gulf of California

机译:加利福尼亚北部海湾新生裂谷的高热流和海洋酸化

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摘要

The prevailing tectonic setting in the Gulf California suggests the presence of an undetermined number of short spreading centres with associated hydrothermal systems. However, to date, active seafloor spreading phenomena have been documented in only three of the eight tectonically active basins. Here we report heat flow values as high as 15,436 mW m−2 in two of the northernmost basins of the Gulf of California, providing evidence of intense hydrothermal activity associated with the transition from continental rifting to seafloor spreading. The mean heat flow for the Wagner and Consag basins area is 1,875 mW m−2, more than 15 times higher than the mean value for oceanic crust (105.4 mW m−2). Additional evidence for vigorous hydrothermal circulation and a shallow heat source includes intense gas discharge (CO2 and CH4), widespread low pH (average 7.7), locally high 222Rn concentrations in the bottom water and a high extent of organic matter maturation in the sediments.
机译:加利福尼亚海湾地区普遍存在的构造环境表明存在数量不明的短散布中心以及相关的热液系统。然而,迄今为止,在八个构造活跃的盆地中只有三个记录了活跃的海底扩散现象。在这里,我们报道了加利福尼亚湾最北端两个盆地的热流值高达15436 mW m −2 ,这提供了与从大陆裂谷到海底扩散过渡有关的强烈热液活动的证据。瓦格纳和孔萨格盆地的平均热量流量为1,875 mW m −2 ,比洋壳平均值(105.4 mW m −2 )高出15倍以上)。强烈的水热循环和浅热源的其他证据包括强烈的气体排放(CO2和CH4),广泛的低pH(平均7.7),底部水中局部高的 222 Rn浓度以及较高的沉积物中有机质的成熟。

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