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The state of natural radionuclides of uranium, radium, and thorium in soils

机译:土壤中铀,镭和th的天然放射性核素的状态

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摘要

A review of publications is presented on the state of uranium, radium, and thorium in soils. It is shown that the properties of radionuclides in soils provide the diversity of the forms and mechanisms of their fixation in the soil exchange complex. Organic substances and clay minerals are the most important sorbents of uranium, radium, and thorium. According to the available data, the processes of ion exchange, complexing, hydrolysis, and reduction-oxidation are responsible for the uranium and thorium fixation in soils. For radium, the ion exchange and coprecipitation with its chemical macro analogs and iron hydroxides are considered to be the most important. The initial chemical form of the elements and the presence of macrocomponents affect the sorption behavior of radionuclides from technogenic sources. It is emphasized that the current methods of investigation do not allow assessing in full measure the transformation of the forms and the mechanisms of uranium, radium, and thorium fixation in soils. The causes are presented that make the interpretation of the results obtained difficult.
机译:出版物综述了土壤中铀,镭和th的状况。结果表明,放射性核素在土壤中的性质提供了固定在土壤交换复合物中的形式和机制的多样性。有机物质和粘土矿物是铀,镭和th最重要的吸附剂。根据现有数据,离子交换,络合,水解和还原-氧化过程是土壤中铀和th固定的原因。对于镭而言,离子交换及其化学宏观类似物和氢氧化铁的共沉淀被认为是最重要的。元素的初始化学形式和大分子成分的存在会影响技术来源放射性核素的吸附行为。需要强调的是,当前的调查方法无法全面评估土壤中铀,镭和th固定形式和机理的转变。提出了导致难以解释所获得结果的原因。

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