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Sorption of inorganic C-14 on to calcite, montmorillonite and soil

机译:无机C-14在方解石,蒙脱石和土壤上的吸附

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Although C-14 occurs naturally, it is also a waste product of the nuclear industry, and can be important because of its long half-life, high mobility as an anion, and ready incorporation into biota. Some aqueous inorganic species are anionic with migration minimally retarded by most geological and soil materials. Substantial retardation is expected when calcite is present, but there are few data to quantify this effect. The present study measured partition coefficient values, R-d (concentration on solids divided by concentration in liquids), of 8-851 kg(-1) for a series of calcite materials and for a carbonated soil. In contrast, R-d was zero for montmorillonite. The series of calcite materials varied in particle size. In order to investigate the effects of particle size, dissolution and degassing of C-14 and C-12 were monitored as pH was slowly decreased. The change in pH with addition of acid was strongly affected by particle size, as expected, but there was no systematic effect of particle size on the relative dissolution rates of C-14 VS C-12, or on R-d. Apparently, surface area was not a limiting factor in the interaction of C-14 with these materials. The C-14 in soil behaved most like the very fine calcite, indicating that the specific surface of the soil carbonate was similar to that of the very fine calcite. Crown copyright (C) 1998 Published by Elsevier Science Ltd. All rights reserved. [References: 14]
机译:尽管C-14是天然存在的,但它也是核工业的废品,并且由于其半衰期长,作为阴离子的高迁移率以及易于掺入生物区系而非常重要。一些水性无机物是阴离子的,大多数地质和土壤物质对迁移的影响最小。当方解石存在时,预计会出现明显的延迟,但是很少有数据可以量化这种影响。本研究测量了一系列方解石材料和碳酸盐土壤的分配系数值R-d(固体浓度除以液体中的浓度),为8-851 kg(-1)。相反,蒙脱石的R-d为零。该系列方解石材料的粒度不同。为了研究粒径的影响,在pH缓慢降低的情况下,对C-14和C-12的溶解和脱气进行了监测。如预期的那样,添加酸后pH的变化受粒径的影响很大,但是粒径对C-14 VS C-12或R-d的相对溶解速率没有系统的影响。显然,表面积不是C-14与这些材料相互作用的限制因素。土壤中的C-14的行为最像非常细的方解石,表明土壤碳酸盐的比表面积类似于非常细的方解石。官方版权(C)1998,由Elsevier Science Ltd发布。保留所有权利。 [参考:14]

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