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首页> 外文期刊>Minerals Engineering >A CHEMOSTAT WITH MAGNETIC FEEDBACK FOR THE GROWTH OF SULPHATE REDUCING BACTERIA AND ITS APPLICATION TO THE REMOVAL AND RECOVERY OF HEAVY METALS FROM SOLUTION
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A CHEMOSTAT WITH MAGNETIC FEEDBACK FOR THE GROWTH OF SULPHATE REDUCING BACTERIA AND ITS APPLICATION TO THE REMOVAL AND RECOVERY OF HEAVY METALS FROM SOLUTION

机译:具有磁性反馈的化学还原剂对硫酸盐还原菌的生长及其在溶液中重金属的去除和回收中的应用

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摘要

This paper describes a "magnetic feedback chemostat "for decontaminating various heavy metal solutions, from industrial sources, with direct precipitation as metallic sulphides or with bacterially-produced FeS magnetic adsorbents. The proposal has implications for dramatically improving the economics of this biomagnetic separation process. Variations in magnetic susceptibility of FeS in the region of compositional interest, on the S-rich of 50-50 atomic percent, can reduce the cost of heavy metal extraction by a factor of 50-fold. Appreciable variations in the magnetic properties of the bacterial-FeS occur and this leads to a variability of the overall process rate through the magnetic separator which affects the cost. The problem is that under a particular set of conditions produced by the solution to be treated, the bacteria which produce the most magnetic product are outgrown by those with a less magnetic product. To select the desired bacteria which produce a strongly magnetic adsorbent, the method proposed is to grow, at various dilution rates, a mixed culture of sulphate reducing bacteria (SRB) in the solution to be treated in a chemostat. This will be used to treat an influent of heavy metals and other. Compounds from polluted industrial sources. Nutrient plus sufficient Fe will be added to the influent for the growth of the SRB together with the production of the FeS adsorbent. The overflow from the chemostat will go to a Vortex magnetic separator in which the magnetic FeS and the associated SRB are retuned to the chemostat. The bacteria producing the required magnetic product will therefore be selected and preferentially multiplied in the chemostat. This method will yield SRB producing the desired product starting from inoculate obtained from various natural sources. In this way different bacterial consortia will be selected, appropriate to each industrial requirement.
机译:本文介绍了一种“磁反馈化学稳定剂”,用于对工业来源的各种重金属溶液进行净化,以金属硫化物的直接沉淀或细菌产生的FeS磁性吸附剂的污染。该提议对显着改善这种生物磁分离过程的经济性具有影响。 FeS的磁化率变化在组成感兴趣的区域(富含50%原子百分比的S)可使重金属提取成本降低50倍。细菌FeS的磁性会发生明显的变化,这会导致通过磁选机的总处理速率发生变化,从而影响成本。问题在于,在要处理的溶液产生的特定条件下,产生最多磁性产品的细菌会被那些磁性较小的细菌所覆盖。为了选择产生强磁性吸附剂的所需细菌,提出的方法是在化学稀释液中待处理的溶液中以各种稀释率生长硫酸盐还原细菌(SRB)的混合培养物。这将用于处理重金属和其他废水。来自受污染工业来源的化合物。将营养液和足够的铁添加到进水中,以便SRB的生长以及生产FeS吸附剂。来自化学恒温器的溢流将进入涡旋磁分离器,在该分离器中,磁性FeS和相关的SRB被重新调谐至化学恒温器。因此,将选择产生所需磁性产物的细菌,并优先在恒化器中繁殖。该方法将从各种天然来源获得的接种物中产生SRB,从而生产出所需的产品。这样,将选择适合每个工业需求的不同细菌群落。

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