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从海盐到海水:一种生产水 CRM 的新方法。

From sea salt to seawater: a novel approach for the production of water CRMs.

机构信息

National Research Council Canada, 1200 Montreal Road, Ottawa, ON, K1A 0R6, Canada.

出版信息

Anal Bioanal Chem. 2022 Jul;414(16):4745-4756. doi: 10.1007/s00216-022-04098-0. Epub 2022 May 12.

Abstract

Natural water certified reference materials (CRMs) are mostly available in a liquid form, and they are produced starting from suitable environmental samples. Many precautions are usually needed to avoid biological or physical degradation, including filtration, acidification, and sterilization. In this study, the drawbacks associated with liquid-based seawater CRMs were tackled by developing a salt-based seawater proxy for nutrients that could be reconstituted in water solution just before use. Phosphate, silicate, and nitrate were chosen as target analytes. Sea salt mimicking the composition of seawater was spiked with an aqueous solution of the analytes and homogenized using a high-energy planetary ball mill (u < 1.2%). The salt powder CRM SALT-1 ( https://doi.org/10.4224/crm.2022.salt-1 ) demonstrated good short- and long-term stability for nutrients. When the SALT-1 was reconstituted in water at the 4.0% w/w level, the resulting solution had similar properties with respect to typical seawater in terms of major constituents (± 20%), trace metals, density (1.023 g/mL), pH (8.8-9.0), and optical properties relevant to the photometric characterization. Phosphate and silicate were quantified by photometry (molybdenum blue method, batch mode), whereas nitrate was quantified by isotope dilution GC-MS (u < 1.2%). In the SALT-1 reconstituted seawater solution at the 4.0% w/w salt level, the nutrient amount concentration was w(phosphate, PO) = 1.615 ± 0.030 μmol/L, w(silicate as SiO) = 8.89 ± 0.31 μmol/L, and w(nitrate, NO) = 18.98 ± 0.45 μmol/L at the 95% confidence (k = 2). Overall, the SALT-1 CRM exhibits similar nutrient profile and general analytical characteristics as the MOOS-3 CRM. However, the SALT-1 has much reduced preparation, storage, and distribution cost, likely much better long-term stability, and it could enable the production of lower cost and more accessible seawater reference materials.

摘要

天然水认证参考物质(CRM)主要以液体形式存在,通常从合适的环境样本中制备。为了避免生物或物理降解,通常需要采取许多预防措施,包括过滤、酸化和灭菌。在这项研究中,通过开发一种可在使用前在水溶液中重新配制的基于盐的海水营养物质替代物,解决了基于液体的海水 CRM 的缺点。选择磷酸盐、硅酸盐和硝酸盐作为目标分析物。模拟海水组成的海水盐与分析物的水溶液混合,然后使用高能行星球磨机(u<1.2%)均匀化。盐粉 CRM SALT-1(https://doi.org/10.4224/crm.2022.salt-1)在营养物方面表现出良好的短期和长期稳定性。当 SALT-1 在 4.0%w/w 水平的水中重新配制时,所得溶液在主要成分(±20%)、痕量金属、密度(1.023 g/mL)、pH(8.8-9.0)和与光度特性相关的光学性质方面与典型海水具有相似的性质。磷酸盐和硅酸盐通过光度法(钼蓝法,批量模式)定量,而硝酸盐通过同位素稀释 GC-MS(u<1.2%)定量。在 4.0%w/w 盐水平的 SALT-1 再配制海水中,营养物浓度为 w(磷酸盐,PO)=1.615±0.030 μmol/L,w(硅酸盐为 SiO)=8.89±0.31 μmol/L,w(硝酸盐,NO)=18.98±0.45 μmol/L,置信度为 95%(k=2)。总体而言,SALT-1 CRM 表现出与 MOOS-3 CRM 相似的营养物特征和一般分析特征。然而,SALT-1 具有更低的制备、储存和分配成本,可能具有更好的长期稳定性,并且可以生产出成本更低、更易获取的海水参考物质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dcf/9174130/afe12e66bfd7/216_2022_4098_Fig1_HTML.jpg

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