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Spectrophotometric determination of pH and carbonate ion concentrations in seawater: Choices, constraints and consequences

机译:分光光度法测定海水中pH和碳酸根离子浓度的分光光度法:选择,制约因素和后果

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摘要

Accurate and precise marine CO2 system measurements are important for marine carbon cycle research and investigations of ocean acidification. Seawater pH is important because it can be used to characterize a wide range of chemical and biogeochemical processes. Saturation states of calcium carbonate minerals, which are directly proportional to carbonate ion concentration ([CO32-]), influence biogenic calcification and rates of carbonate dissolution. Spectrophotometric pH and carbonate ion measurements can both benefit greatly from the high sensitivity, stability, consistency and processing speed made possible through automation. Spectrophotometric methods are well-suited for shipboard, underway and in situ deployments under harsh conditions. Spectrophotometric pH measurements typically have a reproducibility of 0.0004-0.001 for shipboard and laboratory measurements and 0.0014-0.004 for in situ measurements. Shipboard spectrophotometric measurements of [CO32-] are becoming common on research expeditions. This review highlights the development of methods and instrumentation for spectrophotometric pH and [CO32-] measurements, and discusses the pros and cons of current technology. A comprehensive summary of the analytical merits of different flow analysis instruments is given. Aspects of measurement protocols that bear on the quality of pH and [CO32-] measurements, such as indicator purification, sample pretreatment, etc., are also described. Based on three decades of experience with seawater analysis, this review includes method recommendations and perspectives directly applicable or potentially applicable to pH and [CO32-] analysis of seawater. (C) 2019 Elsevier B.V. All rights reserved.
机译:准确且精确的海洋二氧化碳系统测量对于海洋碳循环研究和海洋酸化的研究很重要。海水pH是重要的,因为它可用于表征各种化学和生物地球化学过程。碳酸钙矿物的饱和状态与碳酸酯离子浓度(【CO32-])成比例,影响生物钙化和碳酸酯溶解率。分光光度法pH和碳酸盐离子测量可以从通过自动化实现的高灵敏度,稳定性,一致性和加工速度受益匪浅。分光光度法是船上的良好适用于船上,在恶劣条件下正在进行的船舶。分光光度pH测量通常具有0.0004-0.001的船舶和实验室测量的再现性,用于原位测量的0.0014-0.004。 [CO32-]的船上分光光度测量测量在研究探险中是常见的。本综述凸显了分光光度pH和[CO32-]测量的方法和仪表的开发,并讨论了当前技术的利弊。给出了不同流量分析仪器的分析优点的综合摘要。还描述了对pH质量和诸如指示剂纯化,样品预处理等的测量方案的方面。该综述基于三十年的海水分析经验,该综述包括直接适用或可能适用于海水的pH和[CO32-]分析的方法建议和观点。 (c)2019年Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Analytica chimica acta》 |2019年第2019期|共14页
  • 作者单位

    Xiamen Univ Coll Environm &

    Ecol State Key Lab Marine Environm Sci Fujian Prov Key Lab Coastal Ecol &

    Environm Studi Xiamen 361102 Fujian Peoples R China;

    Xiamen Univ Coll Environm &

    Ecol State Key Lab Marine Environm Sci Fujian Prov Key Lab Coastal Ecol &

    Environm Studi Xiamen 361102 Fujian Peoples R China;

    Univ Virginia Dept Environm Sci Charlottesville VA 22904 USA;

    Univ S Florida Coll Marine Sci 140 7th Ave South St Petersburg FL 33701 USA;

    Xiamen Univ Coll Environm &

    Ecol State Key Lab Marine Environm Sci Fujian Prov Key Lab Coastal Ecol &

    Environm Studi Xiamen 361102 Fujian Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

    Seawater; pH; Carbonate ion; Flow analysis; Spectrophotometric detection; Ocean acidification;

    机译:海水;pH;碳酸盐离子;流量分析;分光光度测量;海洋酸化;

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