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Enhancement of biological nitrogen removal performance using novel carriers based on the recycling of waste materials

机译:使用基于废料回收的新型载体提高生物脱氮性能

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This study aims to enhance biological nitrogen removal performance by the innovative carbon-based carriers. The new carriers were produced based on recycling waste materials. In these carriers, the advantages of the hybrid system and physicochemical properties of activated carbon were integrated to promote microbial attachment. To verify the performance of the new carriers compared to the conventional moving carriers, the experiments were conducted in two parallel laboratory-scale sequencing batch reactors under various operating conditions. The analysis revealed that the specific surface area of the new carrier with a total pore volume of 0.0015cm(3)/gr was 10.9 times the specific surface area of a conventional carrier. Further, the comparative results indicated that the new highly porous carriers made a major contribution to increasing the attached active biomass up to 20.2%. From the data analysis (DO, ORP, and pH), it was also confirmed that the new carriers had a positive effect on the creation of a greater anoxic zone within the biofilm. Consequently, the simultaneous nitrification-denitrification and total nitrogen removal efficiencies enhanced significantly up to 14.3% and 16.8%, respectively. From the environmental and economic viewpoints, the benefits of the novel carrier showed that it is a practical alternative for the conventional carrier providing a cost-effective wastewater treatment technology. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究旨在通过创新的碳基载体提高生物脱氮性能。新的载体是在回收废料的基础上生产的。在这些载体中,混合系统的优势和活性炭的理化特性综合在一起,以促进微生物的附着。为了验证新载具与常规移动载具相比的性能,在两个平行的实验室规模的测序批量反应器中,在不同的操作条件下进行了实验。分析显示,总孔体积为0.0015cm(3)/ gr的新载体的比表面积是传统载体比表面积的10.9倍。另外,比较结果表明,新型的高度多孔的载体对将附着的活性生物量增加至高达20.2%做出了重大贡献。通过数据分析(DO,ORP和pH),还证实了新载体对生物膜内更大的缺氧区的产生具有积极作用。因此,同时硝化-反硝化和总氮去除效率分别显着提高,分别达到14.3%和16.8%。从环境和经济的观点来看,新型载体的优点表明,它是提供成本效益的废水处理技术的常规载体的实用替代品。 (C)2019 Elsevier Ltd.保留所有权利。

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