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首页> 外文期刊>Frontiers in Marine Science >Advancing Ocean Acidification Biology Using Durafet? pH Electrodes
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Advancing Ocean Acidification Biology Using Durafet? pH Electrodes

机译:使用Durafet推进海洋酸化生物学? pH电极

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摘要

Research assessing the biological impacts of global ocean change often requires a burdensome characterization of seawater carbonate chemistry. For laboratory-based ocean acidification research, this impedes the scope of experimental design. Honeywell Durafet? III pH electrodes provide precise and continuous seawater pH measurements. In addition to use in oceanographic sensor packages, Durafets can also be used in the laboratory to track and control seawater treatments via Honeywell Universal Dual Analyzers (UDA). Here we provide performance data, instructions, and step-by-step recommendations for use of multiple UDA-Durafets. Durafet pH measurements were within ± 0.005 units pHT of spectrophotometric measurements and agreement among eight Durafets was better than ± 0.005 units pHT. These results indicate equal performance to Durafets in oceanographic sensor packages, but methods for calibration and quality control differ. Use of UDA-Durafets vastly improves time-course documentation of experimental conditions and reduces person-hours dedicated to this activity. Due to the versatility of integrating Durafets in laboratory seawater systems, this technology opens the door to advance the scale of questions that the ocean acidification research community aims to address.
机译:评估全球海洋变化的生物影响的研究通常需要对海水碳酸盐化学成分进行繁重的表征。对于基于实验室的海洋酸化研究,这阻碍了实验设计的范围。霍尼韦尔·杜拉夫(Honeywell Durafet)? III pH电极可提供精确而连续的海水pH测量。除用于海洋传感器套件外,Durafets还可以在实验室中通过霍尼韦尔通用双分析仪(UDA)来跟踪和控制海水处理。在这里,我们提供了使用多个UDA-Durafets的性能数据,说明和逐步建议。 Durafet pH测量值在分光光度法测量值的±0.005单位pHT范围内,八个Durafets之间的一致性优于±0.005单位pHT。这些结果表明,在海洋传感器封装中,性能与Durafets相同,但是校准和质量控制的方法不同。使用UDA-Durafets可以极大地改善实验条件的时程记录,并减少用于此活动的工时。由于将Durafets集成到实验室海水系统中的多功能性,这项技术为推进海洋酸化研究界旨在解决的问题规模打开了大门。

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