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Biological Nutrient Removal in an Intermittently Aerated Bioreactor

机译:间歇曝气生物反应器中的生物营养去除

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摘要

The extension of biological processes from carbonaceous impurities removal to nitrogen and phosphorus removal had an impact on the biological system configuration. The system must be well designed, optimized, and operated at its optimum in order to meet the ever more stringent effluent standards. An intermittently aerated completely mixed lab-scale activated sludge bioreactor (IACMB) has been used for modelling biological processes of nutrients removal. Concerning the nitrogen removal, the operating cycles 15–30 (15 minutes of aeration, 30 minutes of only mixing without aeration) and30–30 were tested. For the experiments with luxury uptake processes, the operating cycles 15–45, 15–90, 30–60 and 15–75 were used. The cycle 15–75 was the most satisfactory with convenient lengths of aerobic, anoxic, and anaerobic period, high efficiency ofthe nitrification and denitrification processes, and significant decrease in phosphorus concentration. The results have shown that the intermittently aerated bioreactors are suitable for nitrogen removal as well as luxury uptake of phosphorus. The main advantage is high flexibility in maintenance and control of biochemical environments in the bioreactor.This work is licensed under a Creative Commons Attribution 4.0 International License.
机译:生物过程从碳质杂质的去除扩展到氮和磷的去除对生物系统的结构产生了影响。该系统必须经过精心设计,优化和以最佳状态运行,才能满足日益严格的废水标准。间歇曝气的完全混合实验室规模的活性污泥生物反应器(IACMB)已用于模拟营养物去除的生物过程。关于脱氮,测试了操作周期15–30(15分钟充气,仅30分钟不充气的混合)和30–30。对于奢侈摄取过程的实验,使用的操作周期为15–45、15–90、30–60和15–75。 15-75循环是最令人满意的,其中好氧,缺氧和厌氧期的时间长,硝化和反硝化过程的效率高,并且磷浓度显着降低。结果表明,间歇充气的生物反应器适用于脱氮以及大量吸收磷。主要优点是在维护和控制生物反应器中生化环境方面具有高度灵活性。此项工作获得了Creative Commons Attribution 4.0国际许可。

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