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Automatic control of external carbon source addition for nitrogen removal in sewage with low C/N ratios

机译:自动控制外部碳源添加以低C / N比去除污水中的氮

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For cost-effective nitrogen removal from sewage with low C/N ratios, an automatic control system for the addition of external carbon based on oxidation-reduction potential (ORP) data in an anoxic reactor has been developed. In this study, it was carried out with a pilot-scale modified Bardenpho process. This consisted of anoxic1, aerobic1, anoxic2 and aerobic2 stages with an external recycle ratio of 150% (Q/Q(inf)), and a media packing ratio of 2.4%-2.9% (v/v) in the aerobic reactor. As a result of applying the automatic control system for the minimization of the external carbon source dosage, the dosage was decreased by about 20%. This estimate was based on ORP compared with a stable dosage of 75 mg/L based on the C/NOx-N ratio of the anoxic influent. It was necessary that the ORP set-value be regulated from -120 mV to -80 mV because influent NH4+-N concentration varied from 12 to 15 mg/L due to rainfall. Correspondingly, the demanded dosages were decreased. Drift of the the real-time value in control system was more stable after changing the ORP set-value from -120 mV to -80 mV.
机译:为了从低C / N比的污水中脱除氮,以经济高效的方式开发了一种基于缺氧反应器中氧化还原电位(ORP)数据的外部碳添加自动控制系统。在这项研究中,它是使用中试规模的改良Bardenpho工艺进行的。它由缺氧1,好氧1,缺氧2和好氧2阶段组成,外部循环率为150%(Q / Q(inf)),好氧反应器中的介质填充率为2.4%-2.9%(v / v)。由于应用自动控制系统以最小化外部碳源剂量,该剂量减少了约20%。该估计值基于ORP,而基于缺氧进水的C / NOx-N比,稳定剂量为75 mg / L。 ORP的设定值必须在-120 mV到-80 mV之间调节,因为由于降雨,进水NH4 + -N浓度在12到15 mg / L之间变化。相应地,所需剂量减少了。将ORP设定值从-120 mV更改为-80 mV后,控制系统中实时值的漂移更加稳定。

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