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In situ detection of CO2/CH4 dissolved in vent-associated seawater at the CLAM and Iheya North hydrothermal vents area, Okinawa Trough

机译:在冲绳海槽CLAM和Iheya North热液喷口区域原位检测溶解在与喷口相关的海水中的CO 2 / CH 4

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In situ CO and CH concentrations dissolved in vent-associated seawater (within ten meters from the seafloor) in mid-Okinawa Trough had been measured by novelty CO sensor and CH sensor based the Remotely Operated Vehicle (ROV) mounted on R/V KEXUE. The results showed that the maximum values of CO and CH both occur near active hydrothermal vents in Iheya North area. The maximum detection concentration of CO was as high as 12000 ppm, which is four orders of magnitude higher than previous onboard analyses. At the meantime, the maximum concentration of CH was 8 μmol/l, which is two orders of magnitude higher than reported before. On the other hand, only small quantities of CO and CH were reported near diffusive fluids as the CLAM hydrothermal area has become more and more inactive. However, based on the measurement principle of novelty sensors and their adaptability, the in situ real gas concentrations may be even higher than the present values. Therefore, it is still necessary to develop new high precision sensors, which are designed to adapt to more severe deep-sea environment like high temperature hydrothermal vents, to have a comprehensive understanding of gas geochemistry in hydrothermal fields in the future.
机译:通过新颖的CO传感器和基于安装在R / V KEXUE上的遥控车(ROV)的CH传感器,测量了冲绳海槽中与通气口相关的海水(距海底十米以内)中溶解的原位CO和CH浓度。结果表明,CO和CH的最大值均出现在Iheya North地区活跃的热液喷口附近。 CO的最大检测浓度高达12000 ppm,比先前的机载分析高四个数量级。同时,CH的最大浓度为8μmol/ l,比以前报道的高出两个数量级。另一方面,随着CLAM水热区变得越来越不活跃,仅在扩散流体附近报告了少量的CO和CH。但是,根据新颖性传感器的测量原理及其适应性,原位实际气体浓度可能甚至高于当前值。因此,仍然有必要开发新的高精度传感器,以适应诸如高温热液喷口等更严酷的深海环境,以便将来对热液领域的天然气地球化学有一个全面的了解。

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