白腐菌三级污水处理后的微藻收获。

Anna Civzele, Linda Mezule
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引用次数: 3

摘要

微藻三级污水处理结合了环境可持续性、未来技术和高开发成本。尽管微藻辅助废水处理/生物质资源生产具有明显的生态效益,但技术改进仍然是与其他技术竞争的必要条件。生物絮凝代替机械收获已被证明是一种具有成本效益的替代方法。到目前为止,大多数曲霉属的丝状真菌已被用于此目的。在这项研究中,我们展示了一种利用白腐真菌的新方法,特别是藻类- irpex乳酸复合物的高潜力,在广泛的温度范围(5-20°C)和不同的pH水平下对各种微藻有效。从一级和二级废水中收集微藻,在前24小时内的去除效率为73-93%,48小时后达到95%。乳酸菌颗粒进一步补充了生物絮凝技术的降低运营成本和环境可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Microalgae Harvesting after Tertiary Wastewater Treatment with White-Rot Fungi.

Microalgae Harvesting after Tertiary Wastewater Treatment with White-Rot Fungi.

Microalgae Harvesting after Tertiary Wastewater Treatment with White-Rot Fungi.

Microalgae Harvesting after Tertiary Wastewater Treatment with White-Rot Fungi.

Tertiary wastewater treatment with microalgae incorporates environmental sustainability with future technologies and high exploitation costs. Despite the apparent ecological benefits of microalgae-assisted wastewater treatment/biomass-based resource production, technological improvements are still essential to compete with other technologies. Bio-flocculation instead of mechanical harvesting has been demonstrated as an alternative cost-effective approach. So far, mostly filamentous fungi of genus Aspergillus have been used for this purpose. Within this study, we demonstrate a novel approach of using white-rot fungi, with especially high potential of algae-Irpex lacteus complex that demonstrates efficiency with various microalgae species at a broad range of temperatures (5-20 °C) and various pH levels. Harvesting of microalgae from primary and secondary wastewater resulted in 73-93% removal efficiencies within the first 24 h and up to 95% after 48 h. The apparent reuse potential of the algae-I. lacteus pellets further complements the reduced operating costs and environmental sustainability of bio-flocculation technology.

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