首页> 外文期刊>Analytica chimica acta >226Ra at low levels in environmental, urine, and human bone samples and 223Ra in bone biopsy using alpha-spectrometry and metrological traceability to 229Th/ 225Ra or 226Ra]]>
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226Ra at low levels in environmental, urine, and human bone samples and 223Ra in bone biopsy using alpha-spectrometry and metrological traceability to 229Th/ 225Ra or 226Ra]]>

机译:<![cdata [cdata [c cd:sup =“pre”> 226:sup> Ra在环境,尿液和人骨样的低水平下, 223 < / Ce:使用α-光谱法和测量术曲率为 229> sup> th / 225 ra或 226 ra]]>

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摘要

226Ra is a natural radioelement emitting α and γ radiations. It can be highly concentrated in TENORM materials from the petroleum or fertilizer industries. In Switzerland,226Ra is currently a radioactive inheritance problem from the watch industry. Furthermore,223Ra is a radium isotope used in nuclear medicine to treat bone metastasis. There exist several methods to measure radium using alpha or gamma spectrometry or using222Rn emanation technique. The limitations of these methods are due to the required detection limits and the nature of the samples. When using alpha spectrometry to reach very low detection limits, critical technical hitches often arise because of the difficulties in separating radium from barium, in removing organics eluted from the separating chromatography column, and in plating radium. Moreover, overall chemical recovery of radium is often not reproducible, depending on the studies.Here we propose a method that separates radium from other alkaline-earth cations using cation exchange chromatography and selective complex formation by EDTA and DCTA. Radium is completely free of the229Th tracer and its daughter products, particularly225Ac. Organics from the column are removed in a further purification step so that radium can be plated with acceptable yields in a HCl/HNO3/ethanol solution. We successfully applied the method to soil, water, urine and human bone samples and further extended it to the determination of223Ra in a bone biopsy, using226Ra as an internal tracer.
机译:226RA是一种自然的无线电发射α和γ辐射。它可以高度集中在石油或肥料行业的Tenorm材料中。在瑞士,226RA目前是手表行业的放射性继承问题。此外,223RA是用于治疗骨转移的核药物的镭同位素。存在使用α或伽马光谱法测量镭的几种方法或使用222RN发射技术。这些方法的局限性是由于所需的检测限和样品的性质。当使用α光谱法达到非常低的检测限时,由于在从分离色谱柱洗脱的有机物中和电镀镭分离有机物,通常会出现临界技术携带。此外,根据研究,镭的整体化学回收通常不会再现可重复。发明我们提出了一种使用EDTA和DCTA的选择性复杂形成与其他碱土阳离子分离镭的方法。镭完全没有第22九届示踪剂及其女儿产品,特别是为225ac。在进一步的纯化步骤中除去来自柱的有机物,使得镭可以在HCl / HNO3 /乙醇溶液中具有可接受的产率。我们成功地将该方法应用于土壤,水,尿液和人骨样品,并进一步将其延伸至骨骼活检中的223ra测定,使用226ra作为内部示踪剂。

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