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Effect of cycle time and airflow in biological nitrogen removal from poultry slaughterhouse wastewater using sequencing batch reactor

机译:使用测序批量反应器从家禽屠宰场废水中循环时间和气流在生物氮中去除的影响

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This study aimed to evaluate the influence of airflow (0.25, 0.50 and 0.75 L.L-1.min-1) and cycle time (10.45 h, 14.25 h and 17.35 h) on a sequencing batch reactor (SBR) performance in promoting nitrification and denitrification of poultry slaughterhouse wastewater. The operational stages included feeding, aerobic and anoxic reactions, sedimentation and discharge. SBR was operated in a laboratory scale with a working volume of 4 L, keeping 25% of biomass retained inside the reactor as inoculum for the next batch. In the anoxic stage, C: N ratio was maintained between 5 and 6 by adding cassava starch wastewater. A factorial design (22) with five repetitions was designed at the central point to evaluate the influence of cycle time and airflow on total inorganic nitrogen removal (N-NH4++N-NO2-+N-NO3-) and in the whole process (nitrification and denitrification). The highest total inorganic nitrogen removal (93.3%) was observed for airflow of 0.25 L.L-1.min‑1 and a cycle time of 14.25 h. At the end of the experiment, the sludge inside the reactor was characterized by fluorescent in situ hybridization (FISH), indicating the presence of ammonia and nitrite oxidizing bacteria.
机译:本研究旨在评估气流(0.25,0.50和0.75LL-1.min-1)和循环时间(10.45h,14.25 h和17.35 h)对促进硝化和反硝化的测序批量反应器(SBR)性能的影响家禽屠宰场废水。操作阶段包括饲养,有氧和缺氧反应,沉降和排放。 SBR以实验室规模运作,工作体积为4升,将25%的生物量保留在反应器内作为接种物,用于下一个批次。在缺氧阶段,通过添加木薯淀粉废水,在5至6之间保持C:N比。具有五次重复的因子设计(22)是在中心点设计的,以评估循环时间和气流对总无机氮除去的影响(N-NH4 ++ N-NO 2-+ N-NO3-)和整个过程(硝化和反硝化)。对于0.25L-1.min-1的气流,观察到最高的总无机氮去除(93.3%)和14.25小时的循环时间。在实验结束时,反应器内的污泥的特征在于荧光原位杂交(鱼),表明氨和亚硝酸盐氧化细菌的存在。

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