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Nutrient removal in wastewater treatment high rate algal ponds with carbon dioxide addition

机译:添加二氧化碳可去除废水处理高速率藻类池塘中的养分

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The influence of CO_2 addition to high rate algal ponds (HRAPs) on nitrogen removal was investigated using two pilot-scale HRAPs operated with different hydraulic retention times (HRT: 4 and 8 days), and was compared to the nitrogen removal by the 8-day HRT pond before CO_2 addition was installed. Nitrogen balances were calculated by partitioning total nitrogen into organic and inorganic nitrogen (NH_4~+-N and NO 3--N), and by separation of the organic nitrogen into particulate (PON) and dissolved organic nitrogen (DON). PON was further divided into algal organic nitrogen (AON) and bacteria organic nitrogen (BON) to investigate nitrogen mass flow in the HRAPs. This research shows that the proportion of algae in the algal/bacterial biomass in the longer 8-day HRT HRAP8d (55.6%) was appreciably lower than that in the shorter 4-day HRT HRAP4d (80.5%) when CO_2 was added to control the maximum pH to <8.0 during the summer. Higher bacterial biomass in the longer 8-day HRT HRAP corresponded with higher nitrification rates, indicating that the longer 8-day HRT in the summer was detrimental for two reasons: lower algal productivity and increased nitrogen loss through nitrification/denitrification. Overall nitrogen removal of ~60% in the HRAPs with CO_2 addition was mainly achieved by algal assimilation followed by sedimentation in the settling unit.
机译:使用两个在不同水力停留时间(HRT:4天和8天)下运行的中试规模HRAP,研究了向高速率藻类池(HRAP)添加CO_2对氮去除的影响,并将其与8-安装CO_2之前的HRT天数。通过将总氮分配到有机氮和无机氮(NH_4〜+ -N和NO 3--N)中,以及将有机氮分离成颗粒(PON)和溶解的有机氮(DON),来计算氮平衡。 PON进一步分为藻类有机氮(AON)和细菌有机氮(BON),以研究HRAP中的氮质量流量。这项研究表明,在较长的8天HRT HRAP8d中,藻类/细菌生物量中藻类的比例(55.6%)明显比较短的4天HRT HRAP4d(80.5%)中通过添加CO_2来控制藻类的比例低夏季最大pH值<8.0。在较长的8天HRT HRAP中较高的细菌生物量与较高的硝化速率相对应,这表明夏季较长的8天HRT有不利的两个原因:藻类生产力降低和通过硝化/反硝化作用而增加的氮损失。在加入CO_2的HRAP中,总氮去除率约为60%,这主要是通过藻类同化然后在沉降单元中进行沉降来实现的。

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