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Purifying barite for oxygen isotope measurement by dissolution and reprecipitation in a chelating solution

机译:通过在螯合溶液中溶解和再沉淀来纯化用于氧同位素测量的重晶石

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In the laboratory, barite precipitated from a solution with a high nitrate/sulfate ratio can have a significant amount (up to 28% by weight) of nitrate occluded in barite crystals that cannot be simply washed away. The impurity poses a serious problem for an accurate measurement of the oxygen isotope compositions for atmospheric sulfate, since atmospheric nitrate bears extremely positive Delta(17)O and delta(18)O values. Currently available methods for removing the occluded nitrate are either ineffective or not tested for oxygen isotope exchange. Here, I report a DTPA (a chelating solution) dissolution and reprecipitation (DDARP) method that is simple and effective in removing nitrate and other contaminants in barite. A series of barite dissolution and reprecipitation experiments that utilize O-17-anomalous solutions or barite crystals is conducted to examine the effect on oxygen isotopes during various treatments. It is established that no oxygen isotope exchange occurs between sulfate and water during DDARP treatment at two experimental temperatures (21 and 70 degrees C). Occlusion of DTPA itself in barite is negligible. Upon acidification, barite reprecipitation from a DTPA solution is quantitative (similar to 100%). Partially extracted barite may have slightly lower delta(18)O or delta(34)S values than the originals but no effect on Delta(17)O values. It is also demonstrated that heavily nitrate-contaminated barite samples are free of nitrate occlusion after two dissolution-reprecipitation cycles.
机译:在实验室中,从高硝酸盐/硫酸盐比率的溶液中沉淀出的重晶石可能具有大量(最多占重量的28%)的重氮晶体中所含的硝酸盐,这些硝酸盐无法简单地洗掉。由于大气硝酸盐具有极高的Delta(17)O和delta(18)O值,因此杂质对于准确测量大气硫酸盐的氧同位素组成提出了严重的问题。目前可用的去除堵塞的硝酸盐的方法无效或未测试氧同位素交换。在这里,我报告了一种DTPA(螯合溶液)溶解和再沉淀(DDARP)方法,该方法简单有效地去除了重晶石中的硝酸盐和其他污染物。进行了一系列利用O-17异常溶液或重晶石晶体的重晶石溶解和再沉淀实验,以研究在各种处理过程中对氧同位素的影响。已经确定在两个实验温度(21和70摄氏度)下DDARP处理期间,硫酸盐和水之间没有发生氧同位素交换。重晶石中DTPA本身的吸收可以忽略不计。酸化后,DTPA溶液中的重晶石再沉淀是定量的(类似于100%)。部分提取的重晶石的delta(18)O或delta(34)S值可能比原始值低,但对Delta(17)O值没有影响。还表明在两个溶解-再沉淀循环后,重度硝酸盐污染的重晶石样品没有硝酸盐阻塞。

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