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使用平衡器对热带水库中各种浓度的溶解气体(二氧化碳和甲烷)进行原位测量。

In situ measurements of dissolved gases (CO2 and CH4) in a wide range of concentrations in a tropical reservoir using an equilibrator.

作者信息

Abril Gwenaël, Richard Sandrine, Guérin Frédéric

机构信息

Université Bordeaux 1, CNRS-UMR EPOC 5805, Avenue des Facultés, F 33405 Talence, France.

出版信息

Sci Total Environ. 2006 Feb 1;354(2-3):246-51. doi: 10.1016/j.scitotenv.2004.12.051. Epub 2005 Mar 16.

Abstract

An equilibrator system connected to an infrared photo acoustic gas analyzer was used in order to measure directly in situ the concentrations of dissolved CO2 and CH4 in waters of a tropical reservoir (Petit Saut, French Guiana). The performance of the system was tested both on a vertical profile in the stratified water body of the reservoir and in the surface waters of the river downstream the dam. Results agreed with conventional GC analysis at +/-15% in a wide range of concentrations (CO2:50-400 micromol l-1 and CH4:0.5-350 micromol l-1 corresponding to gas partial pressures of respectively 1700-13,000 and 12-8800 microatm). The time needed for in situ measurements was equivalent to water sampling, time for GC analysis in the laboratory being suppressed. The continuous monitoring of gas concentrations for 24 h in the reservoir surface waters revealed rapid changes in concentrations highly significant in the daily emission budget. The system opens new perspectives for the monitoring of gas concentrations in highly dynamic systems like tropical reservoirs.

摘要

为了直接原位测量热带水库(法属圭亚那的小萨乌特水库)水体中溶解的二氧化碳和甲烷浓度,使用了一个连接到红外光声气体分析仪的平衡器系统。该系统的性能在水库分层水体的垂直剖面上以及大坝下游河流的表层水体中进行了测试。在很宽的浓度范围内(二氧化碳:50 - 400微摩尔/升,甲烷:0.5 - 350微摩尔/升,分别对应于1700 - 13000和12 - 8800微大气压的气体分压),结果与传统气相色谱分析结果的误差在±15%以内。原位测量所需时间与水样采集时间相当,省去了在实验室进行气相色谱分析的时间。对水库表层水体中的气体浓度进行24小时连续监测发现,浓度变化迅速,这在每日排放预算中具有高度显著性。该系统为监测热带水库等高度动态系统中的气体浓度开辟了新的前景。

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