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Arctic Ocean Acidification: Bering Strait Time Series

Arctic Ocean Acidification: Bering Strait Time Series
北冰洋酸化:白令海峡时间序列
批准号:
1023264
负责人:
Fredrick Prahl
金额:
$30.89万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-08-15 至 2014-07-31

项目摘要

项目成果

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中文摘要
翻译
这个项目是北极观测网的一部分,将从白令海峡现有的系泊处收集两年的有关海洋酸化的现场数据。海洋对二氧化碳的吸收降低了海水的pH值,改变了海水中几种关键化学成分的形态,对生物的生理和海水中的声音传播产生了重要影响。考虑到大气中二氧化碳水平上升的全球耦合气候模型预测,北冰洋将是世界上第一个也是最严重的受影响地区。海水酸化。全球和区域模拟社区都需要在北冰洋关键地点进行高质量的观测,以检验和提高其预测能力。该项目的仪器包括基于指示器(SAMI)的pCO2和pH传感器,以及带溶解氧光电和电导率传感器的固态IS-FET pH传感器。校准将通过水文测量和采样程序来实现,该程序将与所有部署和回收一起进行pCO2, DIC,碱度和O2。这将是指示器和固态pH传感器首次在海洋中扩展共同部署,从而首次比较它们在实际现场条件下的性能。需要这些信息来更全面地描述固态系统,其低功耗要求适用于扩展滑翔机,浮子和系泊部署。从诸如此类的比较演习中获得的见解将为北极观测网和最终的全球海洋酸化观测网的设计提供信息。这些机构将通过一系列正在进行的教育和非正式外联活动来解决海洋酸化问题。他们还将通过邀请俄勒冈州的教室参与现有的北极观测网络-白令海峡项目,利用海上教师计划。俄勒冈州立大学荣誉项目的本科生将接触到这个新兴的现实世界问题,并通过项目的实验室组成部分获得训练。数据将存入北极合作数据和信息服务(CADIS)。
英文摘要
This project, part of the Arctic Observing Network, will collect two years of in situ data pertaining to ocean acidification from an existing mooring in Bering Strait. Oceanic uptake of CO2 lowers pH and changes speciation of several key chemical constituents of seawater with important consequences for the physiology of organisms and transmission of sound in seawater. Global coupled climate models that take into account rising levels of CO2 in the atmosphere predict that the Arctic Ocean will be the first and most strongly impacted of the world?s oceans by acidification. High quality observations in key Arctic Ocean locations are needed for both the global and regional modeling communities to test and improve their predictive capabilities. Instruments for the project include indicator based (SAMI) pCO2 and pH sensors as well as a solid state IS-FET pH sensor with dissolved oxygen optode and conductivity sensors. Calibration will be achieved through a hydrographic measurement and sampling program for pCO2, DIC, alkalinity and O2 conducted in conjunction with all deployment and recoveries. This will be the first extended co-deployment of indicator and solid-state pH sensors in the oceans and thus the first comparison of their performance under realistic field conditions. Such information is needed to more fully characterize the solid-state systems whose lower power requirements are desirable for extended glider, float and mooring deployment. Insights from comparative exercises such as this will inform the design of the Arctic Observing Network and an eventual global ocean acidification observation network. The PIs will address ocean acidification in a range of their on-going educational and informal outreach activities. They will also leverage the Teacher-At-Sea program for the existing Arctic Observing Network-Bering Strait project by soliciting participation by Oregon classrooms. Undergraduates in the OSU honors program will be exposed to this emerging real world problem and gain training through entrainment in the laboratory components of the project. Data will be deposited with the Cooperative Arctic Data and Information Service (CADIS).
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