首页> 外文期刊>Hydrometallurgy >A novel method using a complex surfactant for in-situ leaching of low permeable sandstone uranium deposits
【24h】

A novel method using a complex surfactant for in-situ leaching of low permeable sandstone uranium deposits

机译:一种使用复合表面活性剂的原位浸出低渗透砂岩铀矿床的新方法

获取原文
获取原文并翻译 | 示例
           

摘要

Applications of a complex surfactant developed in-house to in-situ leaching of low permeable sandstone uranium deposits are described based on results from agitation leaching, column leaching, resin adsorption, and elution experiments using uranium containing solution from the in-situ leaching site. The results of agitation leaching experiments show that adding surfactant with different concentrations into leaching solution improves the leaching rate of uranium. The maximum leaching rate of uranium from agitation leaching reached 92.6% at an added surfactant concentration of 10 mg/1. Result of column leaching experiment shows that adding surfactant with varying concentrations into leaching solutions increased the permeability coefficient of ore-bearing layer by 42.7-86.8%. The leaching rate of uranium from column leaching increased by 58.0% and reached 85.8%. The result of kinetic analysis shows that for the extraction of uranium controlled by diffusion without surfactant the apparent rate constant 0.0023/d changed to 0.0077/d for the extraction with surfactant controlled by both diffusion and surface chemical reactions. Results from resin adsorption and elution experiments show that there was no influence on resin adsorption and elution of uranium with an addition of 50 mg/1 surfactant to production solution from in-situ leaching. The adsorption curve, sorption capacity of resin, recycling of resin remained the same as without adding any surfactant. Introducing complex surfactant to leaching solution increased the peak concentration of uranium in eluents, reduced the residual uranium content in resin, and promoted the elution efficiency. The method of using a complex surfactant for in-situ leaching is useful for low permeable sandstone uranium deposits.
机译:基于搅拌浸出,柱浸出,树脂吸附以及使用原位浸出部位含铀溶液的洗脱实验的结果,描述了内部开发的复杂表面活性剂在原位浸出低渗透性砂岩铀矿中的应用。搅拌浸出实验结果表明,在浸出液中加入不同浓度的表面活性剂可以提高铀的浸出率。在添加的表面活性剂浓度为10 mg / 1时,从搅拌浸出中铀的最大浸出率达到92.6%。柱浸试验结果表明,在浸出液中加入不同浓度的表面活性剂可使含矿层的渗透系数提高42.7-88.6%。柱浸提铀的浸出率提高了58.0%,达到了85.8%。动力学分析结果表明,对于无表面活性剂扩散控制的铀萃取,表观速率常数0.0023 / d变为0.0077 / d。树脂吸附和洗脱实验的结果表明,在原位浸出的生产溶液中添加50 mg / 1表面活性剂对铀的树脂吸附和洗脱没有影响。吸附曲线,树脂的吸附能力,树脂的再循环与未添加任何表面活性剂的情况相同。在浸出液中引入复杂的表面活性剂可提高洗脱液中铀的峰值浓度,降低树脂中残留的铀含量,并提高洗脱效率。使用复合表面活性剂进行原位浸出的方法可用于低渗透性砂岩铀矿床。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号