层间氧化带型砂岩铀矿床地浸过程的热力学研究:以伊犁盆地512铀矿床为例
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A Thermodynamic Study on the In-situ Leaching Process in Interlayered Oxidation Zone Type Sandstone Uranium Deposits -A Case Study of the No. 512 Uranium Deposit
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    摘要:

    伊梨盆地512层间氧化带型砂岩铀矿床是中国第一个工业化规模开发的地浸铀矿床,作者简要地介绍了其地质特征和地浸开发工艺,并利用较新的Gibbs自由能和平衡常数数据,对该矿床地浸处理中铀的地球化学行为进行了定量研究。首先,通过标准电动势(E^o),氧化-还原电位(Eh)的计算和分析,阐明了H2O2、硝酸盐、大气中自由氧都能提升溶液的Eh值,从而加速矿物相U^4 的氧化溶解,为了节约地浸氧化剂成本,对于U^4 /U^6 比值不太高的矿床来说,建议充分利用大气中自由氧化氧化剂,然后,通过化学平衡计算,推导出了地下水和硫酸浸出液中铀存在形式的计算公式,计算结果表明:(1)512铀矿床矿体所赋存的含矿层地下水中,铀主要以碳酸铀酰类络合物形式存在,并且以UO2(CO3)^4-3和UO2(CO3)^2-2形式为主,并随着pH从7.31升高到8.20,UO2CO3从3.80%降低到0.06%,UO2(CO3)^2-2从21.91%降低到3.12%,而UO2(CO3)^4-3则从74.28%升高到96.82%,(2)512铀矿床硫酸浸出液中,铀主要以硫酸铀酰类络合物形式存在,其中,UO2SO4占63.28%~ 63.86%,UO2(SO4)^2-2占16.55%~21.36%,UO^2 2占15.04%~19.62%,从推导出的计算公式可以看出,硫酸浸出液中铀的存在形式随溶液pH、总SO^2-4含量的变化而变化,并呈非线性关系,为了提高离子交换树脂的吸附性能,可利用文中推导出的公式进行计算,以使调节溶浸液的pH和总SO^2-4含量,从而达到浸出液中铀存在形式的最佳比例关系,最后,因热力学数据对化学反应平衡计算的影响呈指数关系,在进行热力学数据计算时,必须采用较新、较准确的数据。

    Abstract:

    The No. 512 Deposit, which is an interlayered oxidation zone type sandstone uranium deposit in the Yli basin, is the first acid in-situ leaching uranium deposit of industrial significance in China. The authors briefly introduce both its geological characteristics and the in-situ leach techniques, and quantitatively study the geochemical activity of uranium during in-situ leaching by both the new Gibbs free energies and equilibrium constants of uranyl complexes. Firstly, both calculated E0 and Eh indicate that H2O2, nitrate and the free oxygen in air all can increase the Eh in aqueous solutions and can oxidize the U4+ in mineral phases. Free oxygen in air is considered to be an economical oxidant for uranium deposits, whose U4+/U6+ ratios are comparatively low. Secondly, the formulas for calculating uranium species in both underground water and solution from sulphuric acid in-situ leaching are deducted by chemical equilibrium calculation, and the calculated results show that: (1) the uranium mostly exists in the form of uranyl carbonate complexes, mainly in the form of uranyl tricarbonate and uranyl dicarbonate anions in the ore-bearing aquifers of the No. 512 deposit, in which UO2CO3 is from 3. 80% down to 0. 06%, UO2(CO3)22- from 21. 91% down to 3. 12%, but UO2 (CO3)34- from 74. 28% up to"96. 82% along with pH from 7. 31 up to 8. 20; and (2) the uranium mostly exists in the form of uranyl sulfate complexes in the solution from the No. 512 deposit, in which UO2SO4 is 63. 28% -63. 86% ,UO2(SO4)22-16. 55%-21. 36% ,UO22+15. 04%-19. 62% , and the formula indicates that the ratio of uranium species varies with both the pH and the total SO42- contents in the solution and their relationship is nonlinear. In order to have the best proportions of uranium species in the solution for increasing the adsorptive capability of ion-exchange resins, the pH and total SO42- contents in working solution may be adjusted by the formulas in this paper. Finally, it is suggested to use the new exact thermodynamic data for the calculation because thermodynamic data will affect the calculation of chemical equilibrium by an exponential factor.

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李德平 王保群 等.2002.层间氧化带型砂岩铀矿床地浸过程的热力学研究:以伊犁盆地512铀矿床为例[J].地质论评,48(6):642-650,[DOI].
LI Deping, GU Lianxing, WANG Baoqun) State Key Laboratory of Mineral Deposit Research, Earth Science Department, Nanjing University,) Research Institute No. ,Geological Bureau of China Nuclear Industry, Changsha, Hunan Province,) Geological Team No. ,Geological Bureau of China Nuclear Industry, Urumqi, Xinjiang Province,.2002. A Thermodynamic Study on the In-situ Leaching Process in Interlayered Oxidation Zone Type Sandstone Uranium Deposits -A Case Study of the No. 512 Uranium Deposit[J]. Geological Review,48(6):642-650.

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