...
首页> 外文期刊>Ocean Science Discussions >An automated gas exchange tank for determining gas transfer velocities in natural seawater samples
【24h】

An automated gas exchange tank for determining gas transfer velocities in natural seawater samples

机译:自动气体交换罐,用于确定天然海水样品中的气体转移速度

获取原文
   

获取外文期刊封面封底 >>

       

摘要

In order to advance understanding of the role of seawater surfactants in the air–sea exchange of climatically active trace gases via suppression of the gas transfer velocity (kw), we constructed a fully automated, closed air–water gas exchange tank and coupled analytical system. The system allows water-side turbulence in the tank to be precisely controlled with an electronically operated baffle. Two coupled gas chromatographs and an integral equilibrator, connected to the tank in a continuous gas-tight system, allow temporal changes in the partial pressures of SF6, CH4 and N2O to be measured simultaneously in the tank water and headspace at multiple turbulence settings, during a typical experimental run of 3.25 h. PC software developed by the authors controls all operations and data acquisition, enabling the optimisation of experimental conditions with high reproducibility. The use of three gases allows three independent estimates of kw for each turbulence setting; these values are subsequently normalised to a constant Schmidt number for direct comparison. The normalised kw estimates show close agreement. Repeated experiments with Milli-Q water demonstrate a typical measurement accuracy of 4% for kw. Experiments with natural seawater show that the system clearly resolves the effects on kw of spatial and temporal trends in natural surfactant activity. The system is an effective tool with which to probe the relationships between kw, surfactant activity and biogeochemical indices of primary productivity, and should assist in providing valuable new insights into the air–sea gas exchange process.
机译:为了通过抑制气体传输速度(k w )来进一步了解海水表面活性剂在气候活动痕量气体的海-气交换中的作用,我们构建了一种全自动,封闭的空气-水煤气交换罐和耦合分析系统。该系统可通过电子挡板精确控制水箱中的水侧湍流。在连续气密系统中连接到储罐的两个耦合气相色谱仪和一个整体平衡器允许SF 6 ,CH 4 和N的分压随时间变化在3.25 h的典型实验运行期间,在多个湍流设置下,在水箱水和顶部空间中同时测量 2 O。作者开发的PC软件可控制所有操作和数据采集,从而能够以最高的可重复性优化实验条件。对于每种湍流设置,三种气体的使用允许对k w 进行三个独立的估计。随后将这些值归一化为常数Schmidt数以进行直接比较。归一化的k w 估计值显示出紧密的一致性。重复使用Milli-Q水进行的实验表明,k w 的典型测量精度为4%。用天然海水进行的实验表明,该系统清楚地解决了天然表面活性剂活性时空趋势对k w 的影响。该系统是探测k w ,表面活性剂活性和初级生产力的生物地球化学指标之间关系的有效工具,并应有助于为海-气交换过程提供有价值的新见解。

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