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Nitrogen removal from aquaculture pond water by heterotrophic nitrogen assimilation in lab-scale sequencing batch reactors

机译:在实验室规模的分批反应器中通过异养氮同化从水产养殖池塘水中去除氮

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The potential use of sequencing batch reactors (SBRs) as an alternative bio-flocs technology (BFT) approach in aquaculture was explored. One SBR was dosed with glycerol and one with acetate for the decrease of the nitrogen concentration in simulated aquaculture water by microbial assimilation. At an optimal C/N ratio between 10 and 15, the nitrogen removal efficiency reached up to 98% (=110 mg N L~(-1) reactor day~(-1)) for both SBRs. The estimated biomass productivity reached 0.62– 0.94 g C L~(-1) reactor day~(-1) for the glycerol SBR and 0.54–0.82 g C L~(-1) reactor day~(-1) for the acetate SBR. The floc protein content, indicating biomass quality, reached up to 57% if grown on glycerol. With acetate, it attained a value of 61%. The highest average poly-b-hydroxybutyrate (PHB) content was 16% on a dry weight basis for the acetate biomass.
机译:研究了在水产养殖中作为生物絮凝技术(BFT)替代方法的分批测序反应器(SBR)的潜在用途。一种SBR加入甘油,另一种加入乙酸盐,以通过微生物同化作用降低模拟水产养殖水中的氮浓度。在最佳C / N比介于10和15之间时,两种SBR的脱氮效率均达到98%(= 110 mg N L〜(-1)反应器天〜(-1))。甘油SBR的估计生物量生产率达到0.62-0.94 g C L〜(-1)反应器天〜(-1),乙酸盐SBR的估计生物量生产率达到0.54-0.82 g C L〜(-1)反应器天〜(-1)。如果在甘油上生长,则表明生物量质量的絮凝蛋白含量可达57%。用乙酸盐,其值达到61%。乙酸生物质的最高平均聚-b-羟基丁酸酯(PHB)含量以干重计为16%。

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