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Simultaneous biological removal of sulphide and nitrate by autotrophic denitrification in an activated sludge system

机译:在活性污泥系统中通过自养反硝化同时生物去除硫化物和硝酸盐

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The feasibility of an autotrophic denitrification process in an activated sludge reactor, using sulphide as the electron donor, was tested for simultaneous denitrification and sulphide removal. The reactor was operated at nitrate (N) to sulphide (S) ratios between 0.5 and 0.9 to evaluate their effect on the N-removal efficiency, the S-removal efficiency and the product formation during anoxic oxidation of sulphide. One hundred per cent removal of both nitrate and sulphide was achieved at a NLR of 7.96 mmol N(.)L(-1.)d(-1) (111.44 mg NO3(-)-N(.)L(-1.)d(-1)) and at a N/S ratio of 0.89 with complete oxidation of sulphide to sulphate. The oxygen level in the reactor (10%) was found to influence the N-removal efficiency by inhibiting the denitrification process. Moreover, chemical (or biological) oxidation of sulphide with oxygen occurred, resulting in a loss of the electron donor. FISH analysis was carried out to study the microbial population in the system.
机译:使用硫化物作为电子给体,在活性污泥反应器中进行自养反硝化过程的可行性进行了同时反硝化和硫化物去除的测试。该反应器以硝酸盐(N)与硫化物(S)之比在0.5至0.9之间运行,以评估它们对硫化物的缺氧氧化期间的N去除效率,S去除效率和产物形成的影响。在7.96 mmol N(.L(-1。)d(-1)(111.44 mg NO3(-)-N(.L)-1(N。 )d(-1)),N / S比为0.89,硫化物完全氧化成硫酸盐。发现反应器中的氧含量(10%)通过抑制反硝化过程影响脱氮效率。而且,发生了硫化物被氧的化学(或生物)氧化,导致电子供体的损失。进行了FISH分析以研究系统中的微生物种群。

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