首页> 外文OA文献 >Recovery of Molybdenum, Chromium, Tungsten, Copper, Silver, and Zinc from Industrial Waste Waters Using Zero-Valent Iron and Tailored Beneficiation Processes
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Recovery of Molybdenum, Chromium, Tungsten, Copper, Silver, and Zinc from Industrial Waste Waters Using Zero-Valent Iron and Tailored Beneficiation Processes

机译:使用零价熨斗和量身定制的受益方法,从工业废水中恢复钼,铬,钨,铜,银,和锌

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摘要

Zero-valent iron (ZVI) has been used for water treatment for more than 160 years. However, passivation of its surface often constituted a problem which could only be tackled recently by the innovative Ferrodecont process using a fluidized bed reactor. In this study, pilot scale experiments for the removal of Mo, Cr, W, Cu, Ag and Zn from two industrial waste water samples and lab-scale experiments for the beneficiation of the abrasion products are presented to integrate the Ferrodecont process into a complete recycling process chain. Firstly, 38.5 % of Cu was removed from sample A, yielding abrasion products containing 33.1 wt% Cu as metallic copper (Cu) and various Cu compounds. The treatment of sample B removed 99.8 % of Mo, yielding abrasion products containing 17.8 wt% of Mo as amorphous phases or adsorbed species. Thermal treatment (1300 °C) of the abrasion product A indicated a reduction of delafossite to metallic Cu according to differential scanning calorimetry (DSC), thermogravimetry (TG) and X-ray diffraction (XRD), which was successfully separated from the magnetic iron phases. Hydrometallurgical treatment (1.5 M NaOH, 3 d, liquid:solid ratio (L:S) = 15:1) of sample B yielded aqueous extracts with Mo concentrations of 5820 to 6300 mgL-1. In conclusion, this corresponds to an up to 53-fold enrichment of Mo during the entire process chain.
机译:零价熨斗(ZVI)已被用于水处理超过160年。然而,其表面的钝化通常构成了一个问题,该问题只能使用流化床反应器通过创新的Ferrodecont工艺来解决。在本研究中,提出了从两个工业废水样品中除去Mo,Cr,W,Cu,Ag和Zn的试验规模实验,并进行了用于磨损产品的利润的实验室实验,以将Ferrodecont过程集成为完整的再循环过程链。首先,从样品A中除去38.5%的Cu,产生含有33.1wt%Cu作为金属铜(Cu)和各种Cu化合物的磨损产物。样品B的处理除去了99.8%的Mo,产生含有17.8wt%的Mo作为无定形相或吸附物种的磨损产物。磨损产物的热处理(1300℃)表示根据差示扫描量热法(DSC),热重试剂(Tg)和X射线衍射(XRD)将Delafossite还原为金属Cu,其成功与磁铁分离阶段。液压冶金处理(1.5M NaOH,3 D,液体:样品B的实心比(L:S)= 15:1)产生含水提取物,其中Mo浓度为5820至6300mg-1。总之,这对应于整个过程链期间Mo富集的富集富集。

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