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Short-cut waste activated sludge fermentation and application of fermentation liquid to improve heterotrophic aerobic nitrogen removal by Agrobacterium sp. LAD9

机译:短程废物活性污泥发酵和发酵液的应用,以提高农杆菌属土壤去除异养性好氧氮的能力。 LAD9

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Conventional anaerobic waste activated sludge (WAS) fermentation has been proved efficient in WAS reduction and internal carbon sources (e.g. volatile fatty acids) production for heterotrophic aerobic nitrogen removal, but to be time-consuming (within weeks). This study revealed similar efficiency for nitrogen removal enhanced by Agrobacterium sp. LAD9 capable of heterotrophic aerobic nitrogen removal using products from short-cut WAS fermentation process improved by thermal-alkaline pretreatment within only 14 h. Bench-scale experiments demonstrated that about 30% organics could be extracted for carbon sources recovering and sludge reduction during short-cut WAS fermentation, and addition of CaO, MgCl2·6H2O and polyacrylamide sequentially into fermented WAS exhibited better sludge dewa-terability and higher carbon recovery efficiency. With the similar initial biomass concentration, the activated-sludge system with addition of LAD9 and short-cut fermentation products (chemical oxygen demand to nitrogen (COD/N) = 9) excellently performed with nitrogen removal efficiency of 86.4% within 6 h, much higher than those of 74.2% with addition of LAD9 only (COD/N = 6) and 52.5% with neither LAD9 nor short-cut fermentation products (COD/N = 6). The proposed system modified with LAD9 is of great potential for on-site reduction, reuse and recycling of WAS, and more efficient than conventional nitrogen removal systems by using short-cut WAS fermentation liquid.
机译:已证明常规厌氧废物活性污泥(WAS)发酵可有效减少WAS和生产内部碳源(例如挥发性脂肪酸),以去除异养性好氧氮,但非常耗时(数周之内)。这项研究表明,土壤杆菌提高了除氮效率。 LAD9能够通过短时WAS发酵过程中的产物去除异养型需氧氮,通过热碱预处理仅在14小时之内即可完成。实验室实验表明,在WAS短程发酵过程中,可以提取约30%的有机物用于碳源的回收和污泥的减少,并且在发酵的WAS中依次添加CaO,MgCl2·6H2O和聚丙烯酰胺显示出更好的污泥脱水性和更高的碳含量。恢复效率。在初始生物质浓度相似的情况下,添加了LAD9和快捷发酵产物(氮中的化学需氧量(COD / N)= 9)的活性污泥系统在6小时内的脱氮效率达到了86.4%,效果非常好。仅添加LAD9(COD / N = 6)的比例高于74.2%,不添加LAD9和短发酵产物(COD / N = 6)的比例高于52.5%。提出的用LAD9改良的系统具有现场还原,重复利用和回收WAS的巨大潜力,并且比传统的脱氮系统使用短程WAS发酵液更有效。

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