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Enhanced aerobic granulation, stabilization, and nitrification in a continuous-flow bioreactor by inoculating biofilms

机译:通过接种生物膜增强连续流生物反应器中的好氧造粒,稳定和硝化作用

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In this study, the possibility of using backwashed biofilm as seed in an aerobic granular sludge continuous-flow airlift fluidized bed (CAFB) reactor was investigated. After the addition of the inoculated backwashed biofilm, the start-up period of this reactor fed with municipal wastewater was reduced to 25 days, and aerobic granulation and stabilization were enhanced. At steady state, the chemical oxygen demand (COD) removal efficiency and nitrification efficiency were as high as 80–90 and 60 %, respectively. The CAFB was operated continuously and totally for 90 days, and its performance wasmuchmore stablewhen comparedwith systeminoculated with activated sludge. Microbial distribution analyzed by fluorescence in situ hybridization (FISH) showed that the nitrite-oxidizing bacteria (NOB) and ammonium-oxidizing bacteria (AOB) were compatible with heterotrophic bacteria and distributed evenly throughout the granules. Such unique population distribution might be attributed to the low COD level and abundant dissolved oxygen in the entire granule as simulated by the mathematic models. Moreover, scanning electron microscopy revealed broad holes in the granules, which might promote the mass transfer of the nutrients from the surface to the center and enable simultaneous COD removal and nitrification. In conclusion, backwashed biofilm is an alternative seed of the conventional flocculent activated sludge in the aerobic granular sludge system to enhance carbonaceous oxidization and nitrification.
机译:在这项研究中,研究了在好氧颗粒污泥连续流气提流化床(CAFB)反应器中使用反洗生物膜作为种子的可能性。添加接种的反冲洗生物膜后,该反应器的市政污水进料时间缩短到25天,有氧颗粒化和稳定性得到增强。在稳定状态下,化学需氧量(COD)去除效率和硝化效率分别高达80%至90%和60%。 CAFB连续运行90天,与接种活性污泥的系统相比,其性能更加稳定。通过荧光原位杂交(FISH)分析的微生物分布表明,亚硝酸氧化细菌(NOB)和铵氧化细菌(AOB)与异养细菌相容,并均匀地分布在整个颗粒中。如数学模型所模拟,这种独特的种群分布可能归因于整个颗粒中低的COD水平和丰富的溶解氧。此外,扫描电子显微镜显示颗粒中有宽大的孔,这可能会促进营养物质从表面到中心的质量转移,并同时去除COD和硝化。总之,反洗生物膜是需氧颗粒污泥系统中常规絮凝活性污泥的替代种子,可增强碳质氧化和硝化作用。

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