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首页> 外文期刊>Applied Microbiology and Biotechnology >Ferrous sulphate oxidation using Thiobacillus ferrooxidans cells immobilised on sand for the purpose of treating acid mine-drainage
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Ferrous sulphate oxidation using Thiobacillus ferrooxidans cells immobilised on sand for the purpose of treating acid mine-drainage

机译:硫酸亚铁利用固定在沙子上的氧化亚铁硫杆菌细胞处理酸性矿山排水

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摘要

Thiobacillus ferrooxidans was immobilised on sand (size 0.85 mm to 1.18 mm) for use in a repeated batch and continuously operated packed-bed bioreactor which has not been previously reported in the literature. Repeated batch operation resulted in the complete oxidation of ferrous to ferric iron. The bacteria were active immediately after 3–4 weeks in a non-aqueous medium; i.e. the sand was allowed to dry out, demonstrating the stability of the system. A lag phase of 28 days was recorded when the sand was stored dried in a sealed container for 16 weeks compared with a lag phase of 13 days for a sample frozen for 18 weeks. After a period of 10 days, continuous operation of the reactor at a dilution rate of 0.64 h–1 resulted in 95–99% oxidation of ferrous iron or 0.31–0.33 kg m–3 h–1. With the use of a scanning electron microscope, images were recorded of Thiobacillus ferrooxidans on sand.
机译:将铁氧化硫杆菌固定在沙子(尺寸为0.85 mm至1.18 mm)上,以用于重复批处理和连续操作的填充床生物反应器,这在文献中尚未见报道。重复的分批操作导致亚铁完全氧化为三价铁。在非水介质中3-4周后,细菌立即活跃。即让沙子变干,证明了系统的稳定性。当沙子在密封容器中干燥存放16周时,记录到28天的滞后阶段,而冷冻18周的样品则为13天。 10天后,以0.64 h-1 的稀释率连续运行反应器会导致95-99%的亚铁氧化或0.31-0.33 kg m-3 h-1 。使用扫描电子显微镜,在沙子上记录了亚铁氧化硫杆菌的图像。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2001年第4期|560-566|共7页
  • 作者

    T. Wood; K. Murray; J. Burgess;

  • 作者单位

    Department of Mechanical and Chemical Engineering Heriot-Watt University Riccarton Edinburgh EH14 4AS UK;

    Department of Mechanical and Chemical Engineering Heriot-Watt University Riccarton Edinburgh EH14 4AS UK;

    Department of Biological Sciences Heriot-Watt University Riccarton Edinburgh EH14 4AS UK;

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