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Radionuclides, trace elements, and radium residence in phosphogypsum of Jordan

机译:约旦磷石膏中的放射性核素,微量元素和镭的残留量

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摘要

Voluminous stockpiles of phosphogypsum (PG) generated during the wet process production of phosphoric acid are stored at many sites around the world and pose problems for their safe storage, disposal, or utilization. A major concern is the elevated concentration of long-lived ~(226)Ra (half-life = 1,600 years) inherited from the processed phosphate rock. Knowledge of the abundance and mode-of-occurrence of radium (Ra) in PG is critical for accurate prediction of Ra leachability and radon (Rn) emanation, and for prediction of radiation-exposure pathways to workers and to the public. The mean (±SD) of ~(226)Ra concentrations in ten samples of Jordan PG is 601 ± 98 Bq/kg, which falls near the midrange of values reported for PG samples collected worldwide. Jordan PG generally shows no analytically significant enrichment (<10%) of ~(226)Ra in the finer (<53 μm) grain size fraction. Phosphogypsum samples collected from two industrial sites with different sources of phosphate rock feedstock show consistent differences in concentration of ~(226)Ra and rare earth elements, and also consistent trends of enrichment in these elements with increasing age of PG. Water-insoluble residues from Jordan PG con stitute <10% of PG mass but contain 30-65% of the ~(226)Ra . ~(226)Ra correlates closely with Ba in the water-insoluble residues. Uniformly tiny (<10 μm) grains of barite (barium sulfate) observed with scanning electron microscopy have crystal morphologies that indicate their formation during the wet process. Barite is a well-documented and efficient scavenger of Ra from solution and is also very insoluble in water and mineral acids. Radium-bearing barite in PG influences the environmental mobility of radium and the radiation-exposure pathways near PG stockpiles.
机译:在磷酸湿法生产过程中产生的大量磷石膏(PG)储存在世界各地的许多地方,这给它们的安全储存,处置或利用带来了麻烦。一个主要的问题是从加工过的磷矿岩中继承的长寿命〜(226)Ra(半衰期= 1,600年)的浓度升高。 PG中镭(Ra)的丰度和发生方式的知识对于准确预测Ra的浸出性和ra(Rn)的散发以及对工人和公众的辐射暴露途径至关重要。十个约旦PG样品中〜(226)Ra浓度的平均值(±SD)为601±98 Bq / kg,接近全球范围内收集的PG样品报道值的中值。 Jordan PG通常在更细的(<53μm)粒度级分中未显示〜(226)Ra的分析上显着富集(<10%)。从两个工业基地采集的磷石膏原料不同的磷石膏样品显示〜(226)Ra和稀土元素的浓度存在一致的差异,并且随着PG年龄的增加,这些元素的富集趋势也一致。 Jordan PG的水不溶性残留物构成PG质量的10%以下,但含有〜(226)Ra的30-65%。 〜(226)Ra与水不溶性残基中的Ba密切相关。用扫描电子显微镜观察到的重晶石(硫酸钡)的均匀细小(<10μm)晶粒具有晶体形态,表明它们在湿法过程中形成。重晶石是从溶液中清除Ra的有效文献,并且也非常不溶于水和无机酸。 PG中的含镭重晶石会影响镭的环境迁移率以及PG储存附近的辐射暴露路径。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2011年第2期|p.149-165|共17页
  • 作者单位

    US Geological Survey, MS 973, Denver Fe_deral Center,Denver, CO 80225, USA;

    Environmental Science and Engineering Division, Colorado School of Mines, Golden, CO 80401, USA,Environmental Engineering Department, Al-Hussein Bin Talal University, Ma'an, Jordan;

    US Geological Survey, MS 973, Denver Federal Center, Denver, CO 80225, USA;

    Environmental Science and Engineering Division, Colorado School of Mines, Golden, CO 80401, USA;

  • 收录信息 美国《科学引文索引》(SCI);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

    radium; rare earth elements; phosphogypsum; barite; radiobarite; jordan;

    机译:镭;稀土元素;磷石膏重晶石放射性重晶石;约旦;
  • 入库时间 2022-08-17 13:28:17

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