序批式好氧颗粒污泥对有机物、氮、磷的去除效果评价

Tran Quang Loc, Tran Thi Tu, Nguyen Dang Hai, Nguyen Tri Quang Hung, Trang Dang Bao Thuyen, Dinh Thanh Kien
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引用次数: 0

摘要

研究了好氧颗粒污泥法在序批式反应器(SBR)中对富白工业区废水中有机物、氮、磷的去除效果。实验在R1和R2两个SBR中进行,循环时间为240分钟,进行两步曝气,其中气流速率Q1=6 L/min为90分钟,Q2=2 L/min为136分钟。R1采用一步进料,R2采用两步进料(批开始时体积的75%,曝气时间Q1后剩余25%)。结果表明,经过50天的运行试验,污泥粒径由1 ~ 2 mm增大到2 mm,两个反应器均保持了g/L的高生物量(总悬浮固体(TSS)),污泥具有良好的沉降能力,SVI值较低,为40 ~ 42 mL/g TSS。结果表明,R1和R2中的好氧颗粒污泥在运行过程中仍能保持发育和稳定。两种反应器对COD和N-NH4+的去除率相近,分别保持在92 ~ 93%和96 ~ 97%的较高去除率,而对P-PO43-的去除率仅在68 ~ 80%的范围内。在两个反应器中采用两步曝气实现了同时硝化和反硝化过程。此外,实验数据显示,R2中SND的效率(85-87%)高于R1(64-68%),说明R2中的操作模式对SBR运行中有机物和氮的处理更有效。此外,SND在R2中的效率高于R1,也导致R2(75-78%)和R1(68-69%)对总氮的去除率提高10-13%。然而,两种运行方式仍未达到反应器中总氮的完全脱除。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of the Removal Efficiency of Organic Matter, Nitrogen and Phosphorus Using Aerobic Granular Sludge in Sequential Batch Reactor
This research demonstrates the assessment of the removal efficiency of organic matter, nitrogen, and phosphorus in wastewater of Phu Bai industrial zone using aerobic granular sludge process in sequential batch reactor (SBR). The experiment was carried out in two SBR namely R1 and R2 with 240 minutes of cycle time and a two-stepwise aeration was applied including 90 minutes at airflow rate Q1=6 L/min and 136 minutes at Q2=2 L/min. However, one-step feeding was used for R1, meanwhile, 2-step feeding (75% of volumetric at the beginning of batch and 25% remaining after aeration time Q1) was applied for R2. The result showed that the size of sludge particle has increased from 1 to 2 mm and  high biomass (in Total Suspended Solid (TSS) of   g/L was retained in both reactors and  sludge shows a good settling ability with a low SVI value of 40-42 mL/g TSS after 50 days of operational experiment. It was indicated that aerobic granular sludge in R1 and R2 still maintained the development and stability during the operation. The removal efficiency of COD and N-NH4+ removal in two reactors were similar and kept high at 92-93 and 96-97%, respectively, while P-PO43- removal efficiency was just in the range of 68-80%. The simultaneous nitrification and denitrification process (SND) was achieved with two-stepwise      aeration in both reactors. Additionally, the experimental data showed the efficiency of SND in R2 (85-87%) was higher than that of R1 (64-68%), which demonstrated that the operating mode in R2 was more effective to treat organic matter and nitrogen in SBR operation. Furthermore, the higher efficiency of SND in R2 in comparison with R1 also leads to 10-13% higher in removal efficiency of total nitrogen between R2 (75-78%) and R1 (68-69%). However, both operating modes still did not reach the complete removal of total nitrogen in the reactor.  
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