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利用微藻混合培养物对乳制品废水进行营养物回收与去除。

Utilizing Mixed Cultures of Microalgae to Up-Cycle and Remove Nutrients from Dairy Wastewater.

作者信息

Hajri Amira K, Alsharif Ifat, Albalawi Marzough A, Alshareef Shareefa A, Albalawi Raghad K, Jamoussi Bassem

机构信息

Department of Chemistry, Alwajh College, University of Tabuk, Tabuk 71421, Saudi Arabia.

Department of Biology, Jamoum University College, Umm Al-Qura University, Makkah 21955, Saudi Arabia.

出版信息

Biology (Basel). 2024 Aug 6;13(8):591. doi: 10.3390/biology13080591.

Abstract

This study explores the novel use of mixed cultures of microalgae-, , and -for nutrient removal from dairy wastewater (DW). Microalgae were isolated from a local wastewater treatment plant and cultivated under various light conditions. The results showed significant biomass production, with mixed cultures achieving the highest biomass (2.51 g/L), followed by (1.98 g/L) and (1.92 g/L). Supplementing DW (75%) with BG medium (25%) significantly enhanced biomass and pH levels, improving pathogenic bacteria removal. and mixed cultures exhibited high nitrogen removal efficiencies of 92.56% and 93.34%, respectively, while achieved 86.85% nitrogen and 83.45% phosphorus removal. Although growth rates were lower under phosphorus-limited conditions, the microalgae adapted well to real DW, which is essential for effective algal harvesting. Phosphorus removal efficiencies ranged from 69.56% to 86.67%, with mixed cultures achieving the highest removal. Microbial and coliform removal efficiencies reached 97.81%, with elevated pH levels contributing to significant reductions in fecal and coliform levels. These findings suggest that integrating microalgae cultivation into DW treatment systems can significantly enhance nutrient and pathogen removal, providing a sustainable solution for wastewater management.

摘要

本研究探索了微藻、[此处原文缺失两种微生物名称]的混合培养物在去除乳制品废水(DW)中营养物质方面的新用途。微藻从当地污水处理厂分离出来,并在各种光照条件下培养。结果显示生物量显著增加,混合培养物的生物量最高(2.51克/升),其次是[此处原文缺失一种微生物名称](1.98克/升)和[此处原文缺失一种微生物名称](1.92克/升)。用BG培养基(25%)补充DW(75%)显著提高了生物量和pH值水平,改善了病原菌的去除效果。[此处原文缺失一种微生物名称]和混合培养物的氮去除效率分别高达92.56%和93.34%,而[此处原文缺失一种微生物名称]实现了86.85%的氮去除率和83.45%的磷去除率。尽管在磷限制条件下生长速率较低,但微藻对实际的DW适应性良好,这对有效的藻类收获至关重要。磷去除效率在69.56%至86.67%之间,混合培养物的去除率最高。微生物和大肠菌群的去除效率达到97.81%,pH值升高有助于显著降低粪便[此处原文缺失一种微生物名称]和大肠菌群水平。这些发现表明,将微藻培养整合到DW处理系统中可以显著提高营养物质和病原体的去除效果,为废水管理提供了一种可持续的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7f8/11351620/57a66701b1c9/biology-13-00591-g001.jpg

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