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Microbial valorization of solid wastes from a recirculating aquaculture system and the relevant microbial functions

机译:从再循环水产养殖系统和相关的微生物功能中的固体废物的微生物储存

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This study was performed to establish valorization technology for solid wastes from a seawater recirculating aquaculture system (RAS) by using beneficial microorganisms. An efficient microbial agent (KBM-1) was selected based on the degradation activity of the RAS solid wastes (20% slurry) in a lab-scale reactor system considering the removal rates of chemical oxygen demand, solid material, total nitrogen, ammonium-N, and nitrate-N and the production of organic acids as electron donors for denitrification. The microbial consortium KBM-1 was particularly efficient in the removal of ammonium-N and nitrate-N with removal efficiencies of 42% and 50%, respectively, in eight days and in the rapid production of organic acids (230 mg L-1, 3.5 mM, 0.018 kg m(-3) d(-1)) after two days. There was a concomitant removal of NO3-N (41%, 0.005 kg N m(-3) d(-1)) after two days when a significant production of organic acids occurred. Comamonas sp. was a dominant genus after eight days in all treatments. The level of nitrate-N in the treatments with KBM-1 decreased by 50.4% after eight days, as opposed to that of the control sample (27.7%), indicating the potential denitrification activity of Citrobacter freundii and Comamonas sp. The bioaugmented species (Sporolactobacillus inulinus, Lactobacillus mali, Lactobacillus casei, and Clostridium tyrobutyricum), constituting 41% of the total communities, appeared to facilitate the growth of indigenous microbial communities that were involved in the degradation (hence valorization) of solid wastes (mostly remaining fish feed and fish feces) into simple metabolites (organic acids and inorganic materials such as ammonium, nitrite, nitrate, and CO2). The simultaneous generation of organic acids through the valorization of solid wastes and their subsequent reuse in the denitrification of an RAS biofilter system can provide a significant contribution to the eco-friendly management of RASs and provide meaningful economic merit to the solid wastes of RASs.
机译:该研究进行了通过使用有益微生物来建立从海水再循环水产养殖系统(RAS)的固体废物的算法技术。考虑到化学需氧量,固体材料,总氮,铵 - 铵 - N,硝酸盐和硝酸盐和硝酸的生产作为电子供体用于反硝化。微生物联盟KBM-1在除去氨基-N和硝酸盐-N中特别有效,分别在八次和快速生产的有机酸中分别为42%和50%的去除效率(230mg L-1,两天后3.5毫米,0.018千克(-3)D(-1))。在发生大量产生有机酸的情况下,在两天后伴随着NO 3-N(41%,0.005kg N m(-3)D(-3))。 comamonas sp。在所有治疗中八天后是一个主要的属。在八天后,在KBM-1的处理中硝酸盐-N水平降低了50.4%,而不是对照样品(27.7%),表明柠檬杆菌Freundii和Comamonas sp的潜在反硝化活性。生物化物种(孢子酰唑氏菌菊属植物,乳酸杆菌,Mali,乳酸杆菌酪虫,酪乳杆菌菌株),旨在促进涉及固体废物的降解(因此,所述土着微生物群落的生长(主要是将鱼饲料和鱼粪便留成简单的代谢物(有机酸和无机材料,如铵,亚硝酸盐,硝酸盐和CO 2)。通过固体废物的储存同时产生有机酸及其随后的RAS生物过滤系统的反硝化中的再利用可以为RAS的环保管理提供显着贡献,并为RASS的固体废物提供有意义的经济价值。

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