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Recovery of scrap iron metal value using biogenerated ferric iron

机译:利用生物生成的三价铁回收废铁金属价值

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The utility of employing biogenerated ferric iron as an oxidant for the recycling of scrap metal has been demonstrated using continuously growing cells of the extremophilic organism Acidithiobacillus ferrooxidans. A ferric iron rich (70 mol%) lixiviant resulting from bioreactor based growth of A. ferrooxidans readily solubilized target scrap metal with the resultant generation of a leachate containing elevated ferrous iron levels and solubilized copper previously resident in the scrap metal. Recovery of the copper value was easily accomplished via a cementation reaction and the clarified leachate containing a replenished level of ferrous iron as growth substrate was shown to support the growth of A. ferrooxidans and be fully recyclable. The described process for scrap metal recycling and copper recovery was shown to be efficient and economically attractive. Additionally, the utility of employing the Et, of the growth medium as a means for monitoring fluctuations in cell density in cultures of A. ferrooxidans is demonstrated. (c) 2006 Wiley Periodicals, Inc.
机译:利用嗜热微生物嗜酸性氧化亚铁细菌的不断生长的细胞,已经证明了利用生物生成的三价铁作为氧化剂回收废金属的实用性。由基于生物反应器的A.ferrooxidans的生长而产生的富含三价铁的浸出液(70摩尔%)易于溶解目标废金属,并生成含高铁金属含量和先前存在于废金属中的可溶铜的浸出液。铜值的恢复很容易通过胶结反应来完成,而澄清的浸出液中含有补充水平的亚铁作为生长底物,显示出可支持A. ferrooxidans的生长并且可以完全回收。所描述的用于废金属再循环和铜回收的方法被证明是有效的并且在经济上具有吸引力。另外,证明了使用生长培养基的Et作为监测铁氧农杆菌培养物中细胞密度波动的手段的实用性。 (c)2006年Wiley Periodicals,Inc.

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