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EFFECT OF A COMPLEX SURFACTANT ON IN SITU LEACHING OF LOW PERMEABLE SANDSTONE URANIUM DEPOSITS

机译:复合表面活性剂对低渗透砂岩铀矿床原位浸出的影响

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The effect of a complex surfactant on in situ leaching of low permeable sandstone uranium deposits is discussed, based on an Agitation leaching and a column leaching experiments. The results of the Agitation leaching experiment show that adding different concentrations surfactant into leaching solutions increases significantly the leaching rate of uranium. For a surfactant concentration of 10 mg/1, the leaching rate of uranium reaches maximum 92.6%. The results of the column leaching experiment show that adding 10mg/L surfactant into leaching solutions increases the permeability coefficient of ore-bearing layer 28.8% and the leaching rate of uranium 58.0%, resulting in 85.79%. The results of kinetic analysis show that extraction of uranium is controlled by diffusion with apparent rate constant of 0.0023/d without adding surfactant and by surface chemical reaction with apparent rate constant of 0.0077/d with adding surfactant. Thus, for low permeable sandstone uranium deposit, the in situ leaching mining is of great potential if adding the complex surfactant into leaching solutions.
机译:基于搅拌浸出和柱浸实验,讨论了复合表面活性剂对低渗透砂岩铀矿床原位浸出的影响。搅拌浸出实验的结果表明,在浸出液中加入不同浓度的表面活性剂可以显着提高铀的浸出率。当表面活性剂浓度为10 mg / 1时,铀的浸出率最高达到92.6%。柱浸实验结果表明,在浸出液中加入10mg / L表面活性剂可使含矿层的渗透系数提高28.8%,铀的浸出率提高58.0%,达到85.79%。动力学分析结果表明,铀的萃取是通过不加表面活性剂的表观速率常数为0.0023 / d的扩散和表观速率常数为0.0077 / d的表面化学反应来控制的。因此,对于低渗透性砂岩铀矿床,如果将复杂的表面活性剂添加到浸出液中,则原位浸出采矿具有巨大的潜力。

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