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Research on the enhanced biological nitrogen removal of wastewater by the ultrasound-hydrolysis acidification of excess sludge

机译:超声水解酸化超声水解酸化的增强生物氮去除废水的研究

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摘要

To simultaneously improve the removal of nitrogen and phosphorus from wastewater with a low C/N ratio and reduce excess sludge production, in this paper, excess sludge ultrasound-hydrolysis acidification (UHA) pretreatment was coupled with the anaerobic-anoxic-oxic (AAO) process to provide carbon source and enhance biological nitrogen removal performance, and the experimental results can be summarized as follows. First, the total nitrogen (TN) concentrations in the effluent of the system decreased from 16.94 mg/L to 5.74 mg/L, and the removal rate of TN increased by 25.5%. In addition, the concentrations for ammonia nitrogen (NH3-N) in the system decreased 12.59 mg/L, and the removal rate of this index increased by 29.0%. Furthermore, the specific oxygen uptake rate (SOUR) in the anoxic zone increased significantly because the application of UHA products enhanced the microbial activity, and the addition of UHA products had an effect on the microbial community structure in the system. The amounts of denitrifying bacteria such as Betaproteobacteria and Alphaproteobacteria also increased, which enhanced the nitrogen removal efficiency of wastewater biological treatment.Practitioner pointsTreatment of excess sludge in UHA device as an additional carbon source.Nitrogen removal efficiency was greatly improved after adding UHA products.Input of UHA products enhanced microbial activity in AAO system.Denitrifying bacteria increased with the addition of UHA products.
机译:为了同时改善具有低C / N比的废水从废水中除去氮和磷,在本文中,过量的污泥超声水解酸化(UHA)预处理与厌氧 - 氧基 - 氧(AAO)偶联提供碳源和增强生物氮去除性能的方法,实验结果可以概括如下。首先,系统的流出物中的总氮(TN)浓度从16.94mg / L降至5.74mg / L,并且TN的去除率增加25.5%。此外,系统中氨氮(NH3-N)的浓度降低了12.59mg / L,该指数的去除率提高了29.0%。此外,缺氧区的特定氧摄取率(酸)显着增加,因为UHA产品的应用增强了微生物活性,并且UHA产品的添加对系统中的微生物群落结构有影响。诸如Betaproteobacteria和α的脱氮细菌的量也增加,增强了废水生物治疗的氮去除效率。uha器件中的过量污泥的额外污泥的分光点作为额外的碳源。添加uha产品后,在添加uha产品后,润滑性效率大大提高了。 UHA产品增强了AAO System的微生物活性。丹硝化细菌随着UHA产品的增加而增加。

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