Key Laboratory of Eutrophication and Red Tide Prevention of Guangdong Higher Education Institutes, College of Life Science and Technology, Jinan University, Guangzhou 510632, China.
Department of Biotechnology, Bharathidasan University, Tiruchirappalli 620024, India.
J Hazard Mater. 2022 Mar 15;426:127820. doi: 10.1016/j.jhazmat.2021.127820. Epub 2021 Nov 19.
Tobacco wastewater is too difficult to decontaminate which poses a significant environmental problem due to the harmful and toxic components. Chlorella pyrenoidosa is a typical microalgal species with potential in removal of organic/inorganic pollutants and proves to be an ideal algal-based system for wastewater treatment. However, the strategy of tobacco related wastewater treatment using microalgae is in urgent need of development. In this study, C. pyrenoidosa was used to evaluate the removal efficiency of artificial tobacco wastewater. Under various solid-to-liquid (g/L) ratios, 1:1 ratio and acidic pH 5.0 were optimal for C. pyrenoidosa to grow with high performance of removal capacity to toxic pollutants (such as COD, NH-N, nicotine, nitrosamines and heavy metals) with the alleviation of oxidative damage. Algal biomass could reach up to 540.24 mg/L. Furthermore, carbon flux of C. pyrenoidosa was reallocated from carbohydrate and protein biosynthesis to lipogenesis with a high lipid content of 268.60 mg/L at pH 5.0. Overall, this study demonstrates an efficient and sustainable strategy for tobacco wastewater treatment at acidic pH with the production of valuable microalgal products, which provides a promising biorefinery strategy for microalgal-based wastewater bioremediation.
烟草废水极难净化,由于其中含有有害和有毒成分,因此会造成严重的环境问题。蛋白核小球藻是一种典型的微藻物种,具有去除有机/无机污染物的潜力,被证明是一种理想的基于藻类的废水处理系统。然而,利用微藻处理烟草相关废水的策略亟待开发。在本研究中,使用蛋白核小球藻来评估人工烟草废水的去除效率。在各种固液比(g/L)下,1:1 的比例和酸性 pH 值 5.0 最有利于蛋白核小球藻生长,具有高效去除有毒污染物(如 COD、NH3-N、尼古丁、亚硝胺和重金属)的能力,并减轻氧化损伤。藻类生物量最高可达 540.24 mg/L。此外,在 pH 值为 5.0 时,蛋白核小球藻的碳通量从碳水化合物和蛋白质生物合成重新分配到脂类生物合成,脂质含量高达 268.60 mg/L。总的来说,本研究展示了一种在酸性 pH 值下处理烟草废水的高效、可持续策略,并生产出有价值的微藻产品,为基于微藻的废水生物修复提供了一种有前景的生物炼制策略。