常规及混合型化粪池-厌氧滤池配置对水动力及污水处理性能的影响

Maricel Arias Henao, Diego Paredes Cuervo, Patricia Torres Lozada
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引用次数: 0

摘要

分散处理是更可持续地处理农村和城郊地区城市废水的适当战略。综上所述,本研究在中试规模上以两种方式评估了由化粪池(ST)和厌氧过滤器(AF)组成的厌氧配置的性能:(i)在单独的反应器中使用传统系统(CS), (ii)在单个反应器中使用ST和厌氧过滤器的混合系统(HS),两者的理论水力停留时间(hrt)分别为36、30、24和18小时。结果表明,在不同的评估条件下,HS具有更好的性能(变异性较小),在HRT为18小时时,与CS(39.8±13.1% COD和65,8±20,52% TSS)相比,HS具有更高的还原效率(52,0±16.8% COD和73,06±18.5% TSS)。尽管水动力分析显示两种配置都存在双重流动(充分混合和塞流),但HS比CS(52%)表现出更大的塞流优势(62%),这使得前者比后者(23/24小时vs. 19/24小时)更接近理论值。这种性能保证了死区和短路的发生率最低,与CS相比,HS具有更高的Persson液压效率(0.62)和更低的面积要求(0.5)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Conventional and Hybrid Septic Tank-Anaerobic Filter Configurations on the Hydrodynamics and Performance of Wastewater Treatment
Decentralized treatment is an adequate strategy to more sustainably treat municipal wastewater in rural and peri-urban areas. In light of the above, this study evaluated, on a pilot scale, the performance of an anaerobic configuration consisting of a septic tank (ST) and an anaerobic filter (AF) in two modalities: (i) a conventional system (CS) in separate reactors and (ii) a hybrid system (HS) with a ST and an AF in a single reactor –both with theoretical hydraulic retention times (HRTs) of 36, 30, 24, and 18 hours. The results indicated that the HS had a better performance (less variability) under the different conditions evaluated, achieving, at an HRT of 18 hours, higher reduction efficiencies (52,0±16,8% COD and 73,06±18,5% TSS) compared to the CS (39,8±13,1% COD and 65,8±20,52% TSS). Although hydrodynamic analysis showed dual flow (full mix and plug flow) in both configurations, the HS exhibited a greater predominance of plug flow (62%) than the CS (52%), which allowed the former to reach a real HRT closer to the theoretical value than the latter (23/24 vs. 19/24 hours). This behavior guarantees the lowest occurrence of dead zones and short circuits, as well as a higher Persson hydraulic efficiency (0,62) and lower area requirements for the HS in comparison with the CS (0,5).
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