...
首页> 外文期刊>Water Science and Technology >Integration of ceramic membrane and compressed air-assisted solvent extraction (CASX) for metal recovery
【24h】

Integration of ceramic membrane and compressed air-assisted solvent extraction (CASX) for metal recovery

机译:陶瓷膜和压缩空气辅助溶剂萃取(CASX)的集成,可回收金属

获取原文
获取原文并翻译 | 示例
           

摘要

In our previous publications, compressed air-assisted solvent extraction process (CASX) was developed and proved to be kinetically efficient process for metal removal. In the current study, CASX with a ceramic MF membrane integrated for separation of spent solvent was employed to remove and recover metal from wastewater. MF was operated either in crossflow mode or dead-end with intermittent flushing mode. Under crossflow mode, three distinct stages of flux vs. TMP (trans-membrane pressure) relationship were observed. In the first stage, flux increases with increasing TMP which is followed by the stage of stable flux with increasing TMP. After reaching a threshold TMP which is dependent of crossflow velocity, flux increases again with increasing TMP. At the last stage, solvent was pushed through membrane pores as indicated by increasing permeate COD. In dead-end with intermittent flushing mode, an intermittent flushing flow (2 min after a 10-min or a 30-min dead-end filtration) was incorporated to reduce membrane fouling by flush out MSAB accumulated on membrane surface. Effects of solvent concentration and composition were also investigated. Solvent concentrations ranging from 0.1 to 1% (w/w) have no adverse effect in terms of membrane fouling. However, solvent composition, i.e. D_2EHPA/kerosene ratio, shows impact on membrane fouling. The type of metal extractants employed in CASX has significant impact on both membrane fouling and the quality of filtrate due to the differences in their viscosity and water solubility. Separation of MSAB was the limiting process controlling metal removal efficiency, and the removal efficiency of Cd(II) and Cr(VI) followed the same trend as that for COD.
机译:在我们以前的出版物中,开发了压缩空气辅助溶剂萃取工艺(CASX),并被证明是动力学上有效的金属去除工艺。在当前的研究中,采用带有陶瓷MF膜的CASX集成了用于分离废溶剂的方法,以从废水中去除和回收金属。 MF在错流模式下运行或在间歇冲洗模式下处于死角状态。在错流模式下,观察到通量与TMP(跨膜压)关系的三个不同阶段。在第一阶段,通量随TMP的增加而增加,其后是稳定通量随TMP的增加的阶段。在达到取决于横流速度的阈值TMP之后,通量会随着TMP的增加而再次增加。在最后阶段,通过增加渗透液COD指示溶剂被推动通过膜孔。在具有间歇冲洗模式的死角中,要加入间歇冲洗流(死角过滤10分钟或30分钟后2分钟),以通过冲洗积聚在膜表面的MSAB来减少膜污染。还研究了溶剂浓度和组成的影响。溶剂浓度在0.1%至1%(w / w)范围内对膜污染没有不利影响。但是,溶剂组成,即D_2EHPA /煤油之比,对膜结垢有影响。由于CASX中使用的金属萃取剂的粘度和水溶性不同,因此它们对膜的结垢和滤液的质量都有重要影响。 MSAB的分离是控制金属去除效率的极限过程,Cd(II)和Cr(VI)的去除效率与COD的去除趋势相同。

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