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商业票据作为一种有前途的载体,用于培养小球藻生物膜,以处理厌氧消化物废水(ADFE):对光合作用效率的影响。

Commercial paper as a promising carrier for biofilm cultivation of Chlorella sp. for the treatment of anaerobic digestate food effluent (ADFE): Effect on the photosynthetic efficiency.

机构信息

Algae R&D Centre, Murdoch University, Murdoch, Western Australia 6150, Australia.

Algae R&D Centre, Murdoch University, Murdoch, Western Australia 6150, Australia; Centre for Sustainable Aquatic Ecosystems, Harry Butler Institute, Murdoch University, Perth 6150, Australia.

出版信息

Sci Total Environ. 2023 Nov 10;898:165439. doi: 10.1016/j.scitotenv.2023.165439. Epub 2023 Jul 10.

Abstract

Microalgal technology is still economically unattractive due to the high cost associated with microalgal cultivation and biomass recovery from conventional suspension cultures. Biofilm-based cultivation is a promising alternative for higher biomass yield and cheap/easy biomass harvesting opportunities. Additionally, using anaerobic digestate food effluent (ADFE) as a nutrient source reduces the cultivation cost and achieves ADFE treatment as an added value. However, the search for locally available, inexpensive, and efficient support materials is still open to research. This study evaluates the potential of commercially available, low-cost papers as support material for biofilm cultivation of Chlorella sp. and treatment of ADFE. Among the four papers screened for microalgal attachment, quill board paper performed better in higher biomass yield and stability throughout the study period. The attached growth study was done in a modular food container vessel, using anaerobic digestate food effluent (ADFE) as a nutrient source and a basal medium as a control. The microalgae grew well on the support material with higher biomass yield and productivity of 108.64 g(DW) m and 9.96 g (DW) m d, respectively, in the ADFE medium compared with 85.87 g (DW) m and 4.99 g (DW) m d, respectively in the basal medium. Chlorophyll, a fluorescence (ChlF) probe, showed that cell density in the biofilm significantly changes the photosynthetic apparatus of the algae, with evidence of stress observed as the culture progressed. Also, efficient nutrient removal from the ADFE medium was achieved in the 100 %, 85 %, and 40.2 % ratios for ammoniacal nitrogen, phosphate, and chemical oxygen demand (COD). Therefore, using quill board paper as carrier material for microalgal cultivation offers promising advantages, including high biomass production, easy biomass harvesting (by scrapping or rolling the biomass with the paper), and efficient effluent treatment.

摘要

微藻技术由于与微藻培养和从传统悬浮培养中回收生物质相关的高成本,仍然在经济上没有吸引力。基于生物膜的培养是一种有前途的替代方法,可以获得更高的生物质产量和廉价/容易的生物质收获机会。此外,使用厌氧消化食物废水(ADFE)作为营养源可以降低培养成本,并实现 ADFE 处理的附加值。然而,寻找当地可用的、廉价的、高效的支撑材料的研究仍在进行中。本研究评估了市售的低成本纸张作为附着生长培养小球藻和处理 ADFE 的支撑材料的潜力。在所筛选的四种用于微藻附着的纸张中,羽毛板纸在整个研究期间表现出更好的较高生物质产量和稳定性。附着生长研究在一个模块化的食品容器船中进行,使用厌氧消化食物废水(ADFE)作为营养源和基础培养基作为对照。微藻在支持材料上生长良好,在 ADFE 培养基中的生物质产量和生产力分别为 108.64 g(DW)m 和 9.96 g(DW)m d,而在基础培养基中的生物质产量和生产力分别为 85.87 g(DW)m 和 4.99 g(DW)m d。叶绿素荧光(ChlF)探针表明,生物膜中的细胞密度显著改变了藻类的光合作用装置,随着培养的进行,观察到应激的证据。此外,从 ADFE 培养基中实现了氨氮、磷酸盐和化学需氧量(COD)的高效去除,去除率分别为 100%、85%和 40.2%。因此,使用羽毛板纸作为微藻培养的载体材料具有很高的生物质产量、容易收获生物质(通过刮擦或滚动带有生物质的纸张)和高效处理废水等优势。

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