Department of Biotechnology, School of Bio Sciences and Technology, Vellore Institute of Technology, Vellore, Tamil Nadu, 632 014, India.
Department of Biotechnology, Sri Venkateswara College of Engineering, Sriperumbudur Taluk, Kancheepuram District, Tamil Nadu, 602 117, India.
Environ Monit Assess. 2023 Feb 16;195(3):405. doi: 10.1007/s10661-023-10995-3.
Microalgae are a unique renewable resource utilized since ages, serving as a reservoir for the production of various metabolites. In this study, dairy waste water (DWW) is used as the nutrient media for the cultivation of microalgae. This study focuses on the phycoremediation process of converting rich nutrients in the effluent into biomass and removing contaminants using microalgae. The specific growth rate reached the maximum of 0.55 day in Desmococcus olivaceous, followed by 0.39 day for Scenedesmus dimorphus, 0.23 day in DCS (consortia composing all three strains in equal ratio), and lastly 0.22 day in Chlorella vulgaris. The biomass productivity was 1.44 g L day, 1.06 g L day, 0.88 g L day, and 0.65 g L day in D. olivaceous, S. dimorphus, C. vulgaris, and DCS, respectively. The COD and BOD removal percentage was 82.85% and 45.40% in D. olivaceous, 81.98% and 44.25% in C. vulgaris, 80.73% and 53.45% in S. dimorphus, and 80.10% and 43.10% in DCS, respectively. These results emphasize the promising role of algae in dairy effluent treatment, highlighting the effluent as a suitable medium for microalgae cultivation. It verifies the circular bio-economy concept where the treated wastewater is converted into value-added products.
微藻是一种独特的可再生资源,自古以来就被利用,作为生产各种代谢物的储库。在本研究中,使用乳废水(DWW)作为培养微藻的营养培养基。本研究重点研究了利用微藻将废水中丰富的营养物质转化为生物质并去除污染物的光修复过程。特定生长率在念珠藻中达到最大值 0.55 天,随后是栅藻 0.39 天,DCS(由三种菌株等比例组成的共生体)0.23 天,最后是普通小球藻 0.22 天。生物质生产力分别为 1.44 g L 天、1.06 g L 天、0.88 g L 天和 0.65 g L 天。在念珠藻中,COD 和 BOD 的去除率分别为 82.85%和 45.40%,在普通小球藻中,COD 和 BOD 的去除率分别为 81.98%和 44.25%,在栅藻中,COD 和 BOD 的去除率分别为 80.73%和 53.45%,在 DCS 中,COD 和 BOD 的去除率分别为 80.10%和 43.10%。这些结果强调了藻类在乳废水处理中的应用潜力,突出了废水作为微藻培养的适宜介质。它验证了循环生物经济概念,即将处理后的废水转化为增值产品。