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Addition of trace metals increases denitrification rate in closed marine systems

机译:在封闭的海洋系统中添加微量金属可提高反硝化率

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We investigated the effect of trace metals (Fe, Mn, Cu, Zn and Mo) on the denitrification unit at the Montreal Biodome. Two dosages of the five trace metals were tested on a denitrifying bacterial population which was extracted from the denitrification unit and cultured in 250 mL chemostats with artificial sea water. The low dosage showed a 20% increase in the denitrification rate whereas the high dosage had a more pronounced effect with a 250% increase. No increase in bacterial growth was observed, suggesting that the trace metals had an effect on the denitrification activity. When the trace metals were tested separately, only iron had a significant effect similar to the increase in the denitrification rate observed when the five trace metals were added. The combination of Fe and Mn caused a small but significant increase compared to the five trace metals. We then tested the effect of adding Fe, Mn and Cu to the denitrification unit at the Montreal Biodome. A high dosage of these trace metals showed a 250% increase in the denitrification rate, which went from 200 to 700 g NO_x-N/d. Our results showed that the addition of trace metals is crucial for denitrification activities.
机译:我们研究了蒙特利尔生物穹顶中痕量金属(铁,锰,铜,锌和钼)对反硝化装置的影响。在反硝化细菌种群上测试了两种剂量的五种微量金属,该种群从反硝化装置中提取出来,并在250 mL恒温恒湿器中与人工海水一起培养。低剂量时反硝化率提高20%,而高剂量时反硝化率提高250%,效果更明显。没有观察到细菌生长的增加,表明痕量金属对反硝化活性有影响。当分别测试痕量金属时,仅铁具有与添加五种痕量金属时观察到的反硝化速率增加相似的显着效果。与五种痕量金属相比,铁和锰的组合引起少量但显着的增加。然后,我们测试了在蒙特利尔生物馆的反硝化装置中添加铁,锰和铜的效果。这些痕量金属的高剂量显示反硝化率增加了250%,从200克增加到700克NO_x-N / d。我们的结果表明,添加微量金属对于反硝化活动至关重要。

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