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旋转藻生物膜系统在酱油废水修复中的功效及机制。

Efficacy and mechanisms of rotating algal biofilm system in remediation of soy sauce wastewater.

机构信息

Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, School of Resources & Environment, Nanchang University, Nanchang 330031, China.

Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, School of Resources & Environment, Nanchang University, Nanchang 330031, China; Center for Algae Innovation & Engineering Research, Nanchang University, Nanchang 330031, China; School of Infrastructure Engineering, Nanchang University, Nanchang 330031, China.

出版信息

Bioresour Technol. 2024 Aug;406:131047. doi: 10.1016/j.biortech.2024.131047. Epub 2024 Jun 26.

Abstract

This study investigated the efficacy of the rotating algal biofilm (RAB) for treating soy sauce wastewater (SW) and its related treatment mechanisms. The RAB system demonstrated superior nutrient removal (chemical oxygen demand, ammonium nitrogen, total nitrogen, and phosphorus for 92 %, 94 %, 91 %, and 82 %, respectively) and biofilm productivity (14 g m d) at optimized 5-day harvest time and 2-day hydraulic retention time. This was mainly attributed to the synergistic interactions within the algae-fungi (Apiotrichum)-bacteria (Acinetobacter and Rhizobia) consortium, which effectively assimilated certain extracellular polymeric substances into biomass to enhance algal biofilm growth. Increased algal productivity notably improved protein and essential amino acid contents in the biomass, suggesting a potential for animal feed applications. This study not only demonstrates a sustainable approach for managing SW but also provides insight into the nutrient removal and biomass conversion, offering a viable strategy for large-scale applications in nutrient recovery and wastewater treatment.

摘要

本研究考察了旋转藻生物膜(RAB)处理酱油废水(SW)的效果及其相关处理机制。在优化的 5 天收获时间和 2 天水力停留时间下,RAB 系统表现出优异的养分去除效果(化学需氧量、氨氮、总氮和磷的去除率分别为 92%、94%、91%和 82%)和生物膜生产力(14g·m-2·d-1)。这主要归因于藻类-真菌(Apiotrichum)-细菌(不动杆菌和根瘤菌)共生体内部的协同相互作用,它们有效地将某些胞外聚合物物质同化到生物质中,从而促进了藻生物膜的生长。藻类生产力的提高显著增加了生物质中的蛋白质和必需氨基酸含量,表明其在动物饲料应用方面具有潜力。本研究不仅展示了一种可持续的 SW 管理方法,还深入了解了养分去除和生物质转化,为大规模应用于养分回收和废水处理提供了可行的策略。

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