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On the use of MnO_2 cartridges for the plutonium determination in seawater

机译:关于使用MnO_2柱进行海水中the的测定

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摘要

To analyze plutonium (Pu) in open ocean waters can be challenging due to the low seawater concentrations. In this study we compared two techniques for Pu determination, one in-situ MnO2 cartridge system and the more commonly used MnO2 precipitation technique. During the pre-pilot GEOTRACES cruise ANT XXX-1 (2005) we tested MnO2 cartridges for the pre-concentration of Pu from seawater at 19 sampling stations on a transect in the southeastern Atlantic Ocean between Vigo (Spain) and Cape Town (South Africa). Our in-situ sampling setup consisted of one particle cartridge followed by three MnO2 cartridges in a series. Through the system we pumped between 956 and 2700 I of surface seawater with a flow rate between 1.6 and 5.21/min. We found that the adsorption efficiency of a single MnO2 cartridge to adsorb Pu was rather constant and on average a 58 +/- 7%. The adsorption efficiency was also found to be independent of seawater: temperature in the range of 18.3-29.2 degrees C, salinity range 34.2-37.1 parts per thousand, and conductivity in the range of 46.8-58.4 mS/cm. In parallel with the in-situ sampling, discrete surface water samples between 259 and 281 I were taken and Pu was pre-concentrated using the MnO2 precipitation method. We find a good agreement between the Pu concentrations determined with the two different techniques. The in-situ pre-concentration technique requires more radiochemical work in the laboratory but has the advantage that large seawater volumes can be sampled without the necessity for radiochemical processing on-board the ship. The much larger volumes sampled with the in-situ technique compared with the precipitation technique, enables accurate determination of Pu-isotopic ratios with a low relative standard deviation. We have shown in this study that in-situ MnO2 cartridge technique can be used in a reliable way for the determination of dissolved Pu seawater concentration in open ocean waters.
机译:由于海水浓度低,在开放海水中分析p可能具有挑战性。在这项研究中,我们比较了两种测定Pu的技术,一种是原位MnO2柱系统,另一种是更常用的MnO2沉淀技术。在GEOTRACES ANT XXX-1巡洋舰试飞前(2005年)期间,我们在东南大西洋的Vigo(西班牙)和Cape Town(南非)之间的一个样地上的19个采样站测试了MnO2弹药筒中海水中Pu的预富集情况。 )。我们的原位采样设置包括一个颗粒盒,然后是三个系列的MnO2盒。通过该系统,我们泵入了956至2700 I的表层海水,流速为1.6至5.21 / min。我们发现单个MnO2滤芯吸附Pu的吸附效率相当恒定,平均为58 +/- 7%。还发现吸附效率与海水无关:温度在18.3-29.2℃的范围内,盐度在千分之34.2-37.1的范围内,电导率在46.8-58.4 mS / cm的范围内。与原位采样同时,采集了259至281 I之间的离散地表水样品,并使用MnO2沉淀法对Pu进行了预浓缩。我们发现用两种不同的技术测定的Pu浓度之间有很好的一致性。原位预浓缩技术需要在实验室中进行更多的放射化学工作,但其优点是无需对船上进行放射化学处理即可对大量海水进行采样。与沉淀技术相比,使用原位技术采集的样品体积要大得多,从而能够以较低的相对标准偏差准确测定Pu同位素比。我们在这项研究中表明,原位MnO2滤芯技术可以可靠的方式用于确定开放海水中溶解的Pu海水浓度。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2019年第8期|66-75|共10页
  • 作者单位

    Swedish Radiat Safety Author, SE-17116 Stockholm, Sweden|Linkoping Univ, Div Radiol Sci, S-58185 Linkoping, Sweden|IAEA EL, 4 Quai Antoine 1er, MC-98000 Monaco, Monaco;

    Univ Helsinki, Dept Chem, Lab Radiochem, Helsinki, Finland;

    IAEA EL, 4 Quai Antoine 1er, MC-98000 Monaco, Monaco;

    IAEA EL, 4 Quai Antoine 1er, MC-98000 Monaco, Monaco;

    Univ Helsinki, Dept Chem, Lab Radiochem, Helsinki, Finland;

    IAEA EL, 4 Quai Antoine 1er, MC-98000 Monaco, Monaco|Univ Kiel, Inst Geosci, Olshausenstr 40, D-24118 Kiel, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plutonium; In situ; MnO2 cartridge system; MnO2 precipitation; Seawater; GEOTRACES;

    机译:原位;MnO2柱系统;MnO2沉淀;海水;GEOTRACES;

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