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Removal of Nitrate from Groundwater by Cyanobacteria: Quantitative Assessment of Factors Influencing Nitrate Uptake

机译:蓝细菌去除地下水中的硝酸盐:影响硝酸盐吸收的因素的定量评估

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The feasibility of biologically removing nitrate from groundwater was tested by using cyanobacterial cultures in batch mode under laboratory conditions. Results demonstrated that nitrate-contaminated groundwater, when supplemented with phosphate and some trace elements, can be used as growth medium supporting vigorous growth of several strains of cyanobacteria. As cyanobacteria grew, nitrate was removed from the water. Of three species tested, Synechococcus sp. strain PCC 7942 displayed the highest nitrate uptake rate, but all species showed rapid removal of nitrate from groundwater. The nitrate uptake rate increased proportionally with increasing light intensity up to 100 μmol of photons m?2 s?1, which parallels photosynthetic activity. The nitrate uptake rate was affected by inoculum size (i.e., cell density), fixed-nitrogen level in the cells in the inoculum, and aeration rate, with vigorously aerated, nitrate-sufficient cells in mid-logarithmic phase having the highest long-term nitrate uptake rate. Average nitrate uptake rates up to 0.05 mM NO3 ? h?1 could be achieved at a culture optical density at 730 nm of 0.5 to 1.0 over a 2-day culture period. This result compares favorably with those reported for nitrate removal by other cyanobacteria and algae, and therefore effective nitrate removal from groundwater using this organism could be anticipated on large-scale operations.
机译:通过在实验室条件下以分批模式使用蓝细菌培养物,测试了从地下水中生物去除硝酸盐的可行性。结果表明,硝酸盐污染的地下水,当补充有磷酸盐和一些微量元素时,可以用作支持多种蓝细菌菌株旺盛生长的培养基。随着蓝细菌的生长,从水中去除了硝酸盐。在测试的三个物种中, Synechococcus sp.。 PCC 7942菌株显示出最高的硝酸盐吸收速率,但所有物种均显示出地下水中硝酸盐的快速去除。高达100μmol的光子m ?2 s ?1 时,硝酸盐吸收率随光强度的增加而成比例增加,与光合作用平行。硝酸盐的吸收率受接种物大小(即细胞密度),接种物中细胞中固氮水平和通气率的影响,对数中期的充氧,硝酸盐充足的细胞长期长期最高硝酸盐吸收率。在730 nm的培养光密度为0.5至1.0的条件下,平均硝酸盐吸收率可达0.05 mM NO 3 h ?1 在2天的文化时期内。该结果与报道的其他蓝藻和藻类去除硝酸盐的结果相比具有优势,因此,可以预期在大规模操作中使用该生物体从地下水中有效去除硝酸盐。

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