首页> 外文期刊>Marine Technology Society journal >Natural CO_2 Seeps Offshore Panarea: A Test Site for Subsea CO_2 Leak Detection Technology
【24h】

Natural CO_2 Seeps Offshore Panarea: A Test Site for Subsea CO_2 Leak Detection Technology

机译:天然CO_2渗入近海Panarea:海底CO_2泄漏检测技术的试验场

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

During RV Poseidon cruise POS469 (May 2014), the distribution of pCO_2 in the near field of submarine volcanic gas flares in shallow water depths down to 50 m below sea level was continuously monitored using three different and independent methodologies. In situ nondispersive infrared (NDIR) spectrometry, pH measurements, and onboard membrane inlet mass spectrometry (MIMS) were used to determine the fate of rising CO_2 bubbles and the dissolved CO_2 plume patterns in a 300 × 400-m working area. The in situ sensor carrier platform, a towed video-controlled water sampling rosette, equipped with CTD sensors, guaranteed excellent ground truthing of seafloor characteristics and bubble discharge. Sensor data and near-seafloor observations indicated that the gas bubbles (<9 mm in diameter, >97 vol.% of CO_2) dissolved very rapidly within the first 10 m above seafloor. Bottom water masses enriched with pCO_2 (up to 1,100 μatm) show low pH values (up to 7.80) and tend to spread rather downslope west than following the measured weak current in SSE-SSW direction. The 3-D evaluation of pCO_2 plume is a valuable tool to backtrace the origin of CO_2 leakage when compared with local current regimes, water column CTD data, and seafloor bathymetry. Seep sites offshore Panarea can be used for studying CO_2 leakage behavior and testing measuring strategies in shallow waters. Moreover, this area is a naturally designed laboratory to improve existing physicochemical and oceanographic transport models for subsea CO_2 leakage.
机译:在RV波塞冬号POS469巡洋舰航行期间(2014年5月),使用三种不同且独立的方法连续监测了pCO_2在海平面以下海底火山爆发中的分布情况,该深水深度低于海平面以下50 m。使用原位非分散红外(NDIR)光谱,pH测量和机载膜入口质谱(MIMS)来确定300×400-m工作区域中上升的CO_2气泡和溶解的CO_2羽状流的命运。现场传感器载体平台是拖曳的视频控制水采样莲座丛,配有CTD传感器,可确保对海底特征和气泡排放进行出色的地面观测。传感器数据和近海底观测表明,气泡(直径小于9毫米,CO_2大于97体积%)在海底以上前10 m内迅速溶解。富含pCO_2(最高1,100μatm)的底部水团显示出较低的pH值(最高7.80),并且比沿着SSE-SSW方向测得的弱电流顺势向西向下扩展。与本地当前状况,水柱CTD数据和海底测深法相比,pCO_2羽流的3-D评估是回溯CO_2泄漏起源的宝贵工具。 Panarea海上的渗漏点可用于研究CO_2泄漏行为并测试浅水区的测量策略。此外,该区域是自然设计的实验室,旨在改善现有的海底CO_2泄漏的物理化学和海洋学运输模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号