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首页> 外文期刊>Oceanography >Core Principles of the California Current Acidification Network LINKING CHEMISTRY, PHYSICS, AND ECOLOGICAL EFFECTS
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Core Principles of the California Current Acidification Network LINKING CHEMISTRY, PHYSICS, AND ECOLOGICAL EFFECTS

机译:加州当前酸化网络的核心原理将化学,物理和生态效应联系在一起

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摘要

Numerous monitoring efforts are underway to improve understanding of ocean acidification and its impacts on coastal environments, but there is a need to develop a coordinated approach that facilitates spatial and temporal comparisons of drivers and responses on a regional scale. Toward that goal, the California Current Acidification Network (C-CAN) held a series of workshops to develop a set of core principles for facilitating integration of ocean acidification monitoring efforts on the US West Coast. The recommended core principles include: (1) monitoring measurements should facilitate determination of aragonite saturation state (Omega(arag)) as the common currency of comparison, allowing a complete description of the inorganic carbon system; (2) maximum uncertainty of +/- 0.2 in the calculation of Omega(arag) is required to adequately link changes in ocean chemistry to changes in ecosystem function; (3) inclusion of a variety of monitoring platforms and levels of effort in the network will insure collection of high-frequency temporal data at fixed locations as well as spatial mapping across locations; (4) physical and chemical oceanographic monitoring should be linked with biological monitoring; and (5) the monitoring network should share data and make it accessible to a broad audience.
机译:目前正在进行许多监测工作,以增进对海洋酸化及其对沿海环境的影响的了解,但是有必要开发一种协调的方法,以促进在区域范围内对驾驶员和反应进行时空比较。为了实现这一目标,加利福尼亚州当前酸化网络(C-CAN)举办了一系列研讨会,以开发一套核心原则,以促进对美国西海岸海洋酸化监测工作的整合。建议的核心原则包括:(1)监测测量结果应有助于确定文石饱和状态(Omega(arag))作为比较的通用货币,从而可以完整地描述无机碳系统; (2)为了将海洋化学变化与生态系统功能变化充分联系起来,在计算Ω(arag)时需要+/- 0.2的最大不确定度; (3)在网络中纳入各种监测平台和努力水平,将确保在固定地点收集高频时间数据以及跨地点进行空间映射; (4)理化海洋学监测应与生物监测联系起来; (5)监控网络应共享数据并使其能够为广大受众所用。

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