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首页> 外文期刊>Environmental Science and Pollution Research >The effects of different seeding ratios on nitrification performance and biofilm formation in marine recirculating aquaculture system biofilter
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The effects of different seeding ratios on nitrification performance and biofilm formation in marine recirculating aquaculture system biofilter

机译:不同播种比例对海水循环水产养殖系统生物滤池硝化性能和生物膜形成的影响

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摘要

Rapid start-up of biofilter is essential for intensive marine recirculating aquaculture system (RAS) production. This study evaluated the nitrifying biofilm formation using mature biofilm as an inoculum to accelerate the process in RAS practice. The effects of inoculation ratios (0-15 %) on the reactor performance and biofilm structure were investigated. Complete nitrification was achieved rapidly in reactors with inoculated mature biofilm (even in 32 days when 15 % seeding ratio was applied). However, the growth of target biofilm on blank carrier was affected by the mature biofilm inoculated through substrate competition. The analysis of extracellular polymeric substance (EPS) and nitrification rates confirmed the divergence of biofilm cultivation among reactors. Besides, three N-acyl-homoserine lactones (AHLs) were found in the process, which might regulate the activities of biofilm. Multivariate analysis based on non-metric multidimensional scaling (nMDS) also indicated the great roles of AHLs and substrate supply which might fundamentally determine varied cultivation performance on target biofilm.
机译:生物滤池的快速启动对于集约化海洋循环水产养殖系统(RAS)的生产至关重要。这项研究评估了使用成熟生物膜作为接种物来加速RAS实践过程中硝化生物膜的形成。研究了接种比例(0-15%)对反应器性能和生物膜结构的影响。在接种了成熟生物膜的反应器中,可以快速实现完全硝化(即使在施加15%接种比例的32天之内)。然而,靶生物膜在空白载体上的生长受到通过底物竞争接种的成熟生物膜的影响。对细胞外聚合物(EPS)和硝化速率的分析证实了反应器之间生物膜培养的差异。此外,在该过程中发现了三种N-酰基-高丝氨酸内酯(AHL),它们可能调节生物膜的活性。基于非度量多维标度(nMDS)的多变量分析还表明,AHL和底物供应的巨大作用可能从根本上决定目标生物膜上不同的栽培性能。

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