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Nitrate removal in closed-system aquaculture by columnar denitrification.

机译:通过柱状反硝化去除封闭系统养殖中的硝酸盐。

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摘要

The columnar denitrification method of nitrate-nitrogen removal from high-density, closed system, salmonid aquaculture was investigated and found to be feasible. However, adequate chemical monitoring was found to be necessary for the optimization and quality control of this method. When methanol-carbon was not balanced with inlet nitrate-nitrogen, the column effluent became unsatisfactory for closed-system fish culture due to the presence of excess amounts of nitrite, ammonia, sulfide, and dissolved organic carbon. Sulfide production was also influenced by column maturity and residence time. Methane-carbon was found to be unsatisfactory as an exogenous carbon source. Endogenous carbon could not support high removal efficiencies. Freshwater columns adpated readily to an artificial seawater with a salinity of 18% without observable inhibition. Scanning electron microscopy revealed that the bacterial flora was mainly rod forms with the Peritricha (protozoa) dominating as the primary consumers. Denitrifying bacteria isolated from freshwater columns were tentatively identified as species of Pseudomonas and Alcaligenes. A pilot plant column was found to behave in a manner similar to the laboratory columns except that nitrite production was never observed.
机译:研究了从高密度,密闭系统,鲑鱼养殖中去除硝态氮的柱状反硝化方法,认为是可行的。但是,发现对于此方法的优化和质量控制而言,必须进行足够的化学监测。当甲醇-碳与进口硝酸盐-氮不平衡时,由于存在过量的亚硝酸盐,氨,硫化物和溶解的有机碳,色谱柱流出物对于封闭系统鱼养殖变得不令人满意。硫化物的产生还受到色谱柱成熟度和停留时间的影响。发现甲烷碳不能令人满意地用作外源碳源。内源碳不能支持高去除效率。淡水柱很容易适应盐度为18%的人造海水,而没有明显的抑制作用。扫描电子显微镜显示,细菌菌群主要是棒状,以百日咳(原生动物)为主。从淡水柱中分离出的反硝化细菌被初步鉴定为假单胞菌和产碱菌。发现中试工厂色谱柱的行为类似于实验室色谱柱,只是从未观察到亚硝酸盐的产生。

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