Radium isotopes and 222Rn in shallow brines, Kharaghoda (India)

S. Krishnaswami, Ravi Bhushan, M. Baskaran
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引用次数: 54

Abstract

The concentrations of Ra isotopes (224Ra, 223Ra, 228Ra and 226Ra) and 222Rn have been determined in brines from Kharaghoda, western India. The Ra isotopes concentrations in these samples are orders of magnitude higher than that reported in potable groundwaters. The 224Ra activities lie between 28 to 277 dpm per kg; about 4% to 96% of that expected from its production, calculated using 222Rn as a recoil flux monitor. The low [224Ra/222Rn] activity ratios are typical of less saline brines. Retardation factors for Ra in these brines, derived from the 222Rn-224Ra-228Ra system and based on a reversible exchange model, are in the range of about 0.3–114. These values are 3–4 orders of magnitude lower than that in potable groundwaters. The residence time of Ra in Kharaghoda brines is approximately one day. Our data suggest that in briny aquifers Ra is considerably less ‘particle-reactive’ than in potable groundwaters. The retardation factor for Ra shows a strong negative correlation with salinity. This anticorrelation suggests that salinity would play a crucial role in determining the mobility of Ra and its geochemical homologues through groundwater systems.

印度卡拉戈达浅水中的镭同位素和222Rn
测定了印度西部Kharaghoda地区卤水中Ra同位素(224Ra、223Ra、228Ra和226Ra)和222Rn的浓度。这些样品中的Ra同位素浓度比报道的饮用水中的Ra同位素浓度高几个数量级。224Ra的活度在每公斤28至277 dpm之间;使用222Rn作为后坐力监测器计算得出,其产量约为预期的4%至96%。低[224Ra/222Rn]活度比是低盐盐水的典型特征。根据可逆交换模型,从222Rn-224Ra-228Ra体系推导出的这些卤水中Ra的缓凝因子在0.3-114之间。这些数值比饮用地下水中的数值低3-4个数量级。Ra在卡拉戈达盐湖的停留时间约为一天。我们的数据表明,在咸水含水层中,Ra的“粒子反应性”比在饮用水中要低得多。Ra的阻滞因子与盐度呈较强的负相关。这种反相关性表明,盐度在确定Ra及其地球化学同系物在地下水系统中的迁移率方面起着至关重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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