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磷石膏的氡析出系数。

Radon emanation coefficients for phosphogypsum.

作者信息

Rutherford P M, Dudas M J, Arocena J M

机构信息

Department of Renewable Resources, University of Alberta, Edmonton, Canada.

出版信息

Health Phys. 1995 Oct;69(4):513-20. doi: 10.1097/00004032-199510000-00010.

Abstract

Phosphogypsum is a by-product of the phosphate fertilizer industry which is stockpiled in large quantities world-wide. Phosphogypsum consists mainly of dihydrate gypsum (CaSO42H2O) but also contains elevated concentrations of 226Ra and other inorganic species which originate from the processing of phosphate rock. 222Rn gas is the first decay product of 226Ra and has been identified as one of the major environmental concerns associated with phosphogypsum. This study was conducted to determine effects of particle size, weathering, and moisture content on the 222Rn emanation coefficient (epsilon) for phosphogypsum. Average epsilon for air-dry, unfractionated phosphogypsums derived from Togo, Florida, or Idaho rock was approximately 12%. Average epsilon for fine fraction phosphogypsum (< 20 microns diameter) was greater than for unfractionated phosphogypsum by a factor of 4.6, 1.4, and 4.4 for samples derived from Idaho rock, Togo rock, and Florida rock, respectively. Phosphogypsum samples subjected to an artificial weathering procedure lost 40% mass, with no change in epsilon. Increasing water content was found to first slightly decrease, then to increase epsilon compared to air-dry samples; epsilon for 100% saturated phosphogypsum was 1.9-fold greater than in air-dry phosphogypsum. Particle size sorting could account for variability of 222Rn exhalation at repositories. Very high moisture contents could slightly increase 222Rn emanation, but exhalation would likely be reduced due to slow diffusion through porosity of saturated phosphogypsum.

摘要

磷石膏是磷肥工业的副产品,在全球范围内大量堆放。磷石膏主要由二水石膏(CaSO₄·2H₂O)组成,但也含有来自磷矿石加工过程中浓度升高的²²⁶Ra和其他无机物种。²²²Rn气体是²²⁶Ra的首个衰变产物,已被确定为与磷石膏相关的主要环境问题之一。本研究旨在确定粒径、风化和水分含量对磷石膏²²²Rn析出系数(ε)的影响。来自多哥、佛罗里达或爱达荷岩石的风干、未分级磷石膏的平均ε约为12%。对于粒径小于20微米的细颗粒磷石膏,来自爱达荷岩石、多哥岩石和佛罗里达岩石的样品的平均ε分别比未分级磷石膏大4.6倍、1.4倍和4.4倍。经过人工风化处理的磷石膏样品质量损失40%,而ε没有变化。与风干样品相比,发现含水量增加时,ε首先略有下降,然后上升;100%饱和磷石膏的ε比风干磷石膏大1.9倍。粒径分选可以解释储存库中²²²Rn析出的变异性。非常高的含水量可能会使²²²Rn析出略有增加,但由于通过饱和磷石膏孔隙的扩散缓慢,析出可能会减少。

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