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Iron and manganese removal by using manganese ore constructed wetlands in the reclamation of steel wastewater

机译:利用锰矿石人工湿地回收钢铁废水中的铁和锰

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摘要

To reclaim treated steel wastewater as cooling water, manganese ore constructed wetland was proposed in this study for the removal of iron and manganese. In lab-scale wetlands, the performance of manganese ore wetland was found to be more stable and excellent than that of conventional gravel constructed wetland. The iron and manganese concentration in the former was below 0.05 mg/L at hydraulic retention time of 2-5 days when their influent concentrations were in the range of 0.16-2.24 mg/L and 0.11-2.23 mg/L, respectively. Moreover, its removals for COD, turbidity, ammonia nitrogen and total phosphorus were 55%, 90%, 67% and 93%, respectively, superior to the corresponding removals in the gravel wetland (31%, 86%, 58% and 78%, respectively). The good performance of manganese ore was ascribed to the enhanced biological manganese removal with the aid of manganese oxide surface and the smaller size of the medium. The presence of biological manganese oxidation was proven by the facts of good manganese removal in wetlands at chemical unfavorable conditions (such as ORP and pH) and the isolation of manganese oxidizing strains from the wetlands. Similar iron and manganese removal was later observed in a pilot-scale gravel-manganese-ore constructed wetland, even though the manganese ore portion in total volume was reduced from 100% (in the lab-scale) to only 4% (in the pilot-scale) for the sake of cost-saving. The quality of the polished wastewater not only satisfied the requirement for cooling water but also suitable as make-up water for other purposes.
机译:为了将处理过的钢铁废水作为冷却水进行回收,本研究提出了用锰矿石建造的湿地来去除铁和锰。在实验室规模的湿地中,发现锰矿石湿地的性能比常规的砾石人工湿地更稳定和出色。前者中铁和锰的浓度在进水浓度分别为0.16-2.24 mg / L和0.11-2.23 mg / L的水力停留时间为2-5天时低于0.05 mg / L。此外,其对COD,浊度,氨氮和总磷的去除率分别为55%,90%,67%和93%,优于砾石湿地中的相应去除率(31%,86%,58%和78%)。 , 分别)。锰矿石的良好性能归因于借助于氧化锰表面和较小介质尺寸的增强的生物锰去除。在化学不利条件(例如ORP和pH)下,湿地中良好的锰去除效果以及从湿地中分离出锰氧化菌株的事实证明了生物锰氧化的存在。后来,在中试规模的砾石-锰矿石人工湿地中观察到了类似的铁和锰去除率,即使锰矿石的总体积比例从100%(实验室规模)减少到了4%(中试规模)规模)以节省成本。抛光废水的质量不仅满足冷却水的要求,而且还适合作为其他目的的补充水。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2009年第3期|309-317|共9页
  • 作者单位

    College of Environmental Science & Engineering, State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 20092, China;

    College of Environmental Science & Engineering, State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 20092, China;

    College of Environmental Science & Engineering, State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 20092, China;

    College of Environmental Science & Engineering, State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 20092, China;

    College of Environmental Science & Engineering, State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 20092, China;

    College of Resource & Environment, Northwest A & F University, Yangling, Shanxi, 712100, China;

    College of Resource & Environment, Northwest A & F University, Yangling, Shanxi, 712100, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    manganese ore; constructed wetland; steel wastewater; wastewater reclamation;

    机译:锰矿人工湿地;钢铁废水;废水回收;

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