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An assessment of analytical performance of dissolved organic nitrogen and dissolved organic phosphorus analyses in marine environments: a review

机译:海洋环境中溶解有机氮和溶解有机磷分析性能的评估:综述

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To better understand the cycling of marine dissolved organic matter, analytical methods are required allowing for data on dissolved organic nitrogen and phosphorus (DON and DOP) to be acquired with high analytical performance. The coverage of documented DON and DOP analytical performance is very limited; instead analytical data are mostly available for total dissolved N and P (TDN and TDP) analyses. This substitution overestimates analytical performance for DON and DOP measurements due to the cumulative effect of Standard Deviation applied for detection limit and precision evaluations. The little available data obtained by photolytic, chemical, a combination of both, and high temperature combustion methods indicate that current detection limit is 0.30 mu M for DON and 0.010 mu M for DOP. Precision for both analytes, in general, is 4.5%. The data on accuracy is scarce despite availability of Reference Materials for TDN and NO3-+NO2- analyses, and for the TDN measurement is <5%; even fewer data exist for TDP due to a lack of reference material for this analysis. The Beer-Lambert law is linear up to 200 mu M for TDN and 5-6 mu M for TDP. Current analytical abilities for DON/DOP measurements are not ready yet to set the level of dissolved organic carbon analysis. The advance in the analytical performance for DON and DOP measurements depends upon the possibility to improve the analytical performance for dissolved inorganic N and P measurements involved in DON and DOP estimations. For the DOP analysis, an international standard method becomes necessary to develop and evaluate collaboratively. The chemical oceanographers' community should reconsider requirements needed for the coverage of analytical performance for DON and DOP measurements to make this data more shareable and transparent. The lack of these data protracts marine analysts from attaining further methods improvement and development.
机译:为了更好地理解海洋溶解性有机物的循环,需要使用分析方法,以便以较高的分析性能获得有关溶解性有机氮和磷(DON和DOP)的数据。记录的DON和DOP分析性能的覆盖范围非常有限;取而代之的是,分析数据大部分可用于总溶解氮和磷(TDN和TDP)分析。由于标准偏差在检测限和精度评估中的累积作用,因此这种替代方法高估了DON和DOP测量的分析性能。通过光解法,化学法,两者结合以及高温燃烧法获得的很少数据表明,DON的电流检测极限为0.30μM,DOP的电流检测极限为0.010μM。两种分析物的精度通常为4.5%。尽管可以使用参考材料进行TDN和NO3- + NO2-分析,但关于准确性的数据却很少,而TDN测量值小于5%。由于缺乏该分析的参考材料,因此TDP的数据更少。对于TDN,Beer-Lambert定律最大为200μM,对于TDP,线性最大为5-6μM。 DON / DOP测量的当前分析能力尚未准备好设定溶解有机碳分析的水平。 DON和DOP测量的分析性能的进步取决于提高DON和DOP估算中涉及的溶解性无机N和P测量的分析性能的可能性。对于DOP分析,有必要采用国际标准方法来进行协作开发和评估。化学海洋学家社区应重新考虑覆盖DON和DOP测量的分析性能所需的要求,以使这些数据更可共享和透明。这些数据的缺乏使海洋分析人员无法进行进一步的方法改进和开发。

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