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Evaluation of Different Wastewater Treatment Processes and Development of a Modified Attached Growth Bioreactor as a Decentralized Approach for Small Communities

机译:评价不同的废水处理工艺并开发改进的附着生长生物反应器作为小社区的分散方法

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摘要

This study was undertaken to evaluate the potential future use of three biological processes in order to designate the most desired solution for on-site treatment of wastewater from residential complexes, that is, conventional activated sludge process (CASP), moving-bed biofilm reactor (MBBR), and packed-bed biofilm reactor (PBBR). Hydraulic retention time (HRT) of 6, 3, and 2 h can be achieved in CASP, MBBR, and PBBR, respectively. The PBBR dealt with a particular arrangement to prevent the restriction of oxygen transfer efficiency into the thick biofilms. The laboratory scale result revealed that the overall reduction of 87% COD, 92% BOD5, 82% TSS, 79% NH3-N, 43% PO4-P, 95% MPN, and 97% TVC at a HRT of 2 h was achieved in PBBR. The microflora present in the system was also estimated through the isolation, identification, and immobilization of the microorganisms with an index of COD elimination. The number of bacterial species examined on the nutrient agar medium was 22 and five bacterial species were documented to degrade the organic pollutants by reducing COD by more than 43%. This study illustrated that the present PBBR with a specific modified internal arrangement could be an ideal practice for promoting sustainable decentralization and therefore providing a low wastage sludge biomass concentration.
机译:进行这项研究是为了评估三种生物工艺在未来的潜在用途,以便为居民区废水的现场处理指定最理想的解决方案,即传统的活性污泥工艺(CASP),移动床生物膜反应器( MBBR)和填充床生物膜反应器(PBBR)。在CASP,MBBR和PBBR中,水力停留时间(HRT)分别为6、3和2 h。 PBBR处理一个特殊的安排,以防止限制氧气转移到厚厚的生物膜中的效率。实验室规模的结果表明,在2 h的HRT下,COD,92%BOD5、82%TSS,79%NH3-N,43%PO4-P,95%MPN和97%TVC的总体减少量得以实现在PBBR中。还通过分离,鉴定和固定具有COD消除指数的微生物来估计系统中存在的菌群。在营养琼脂培养基上检查的细菌种类为22个,据记录有5个细菌种类可通过将COD降低43%以上来降解有机污染物。这项研究表明,目前的PBBR具有经过特殊修改的内部布置,可能是促进可持续分散化并因此提供低浪费污泥生物质浓度的理想实践。

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