Research Scholar, Department of Civil Engineering, Indian Institute of Technology Hyderabad, Kandi, Telangana, 502285, India.
Department of Civil Engineering, Indian Institute of Technology Hyderabad, Kandi, Telangana, 502285, India.
Environ Sci Pollut Res Int. 2018 Jul;25(21):20732-20742. doi: 10.1007/s11356-018-2209-6. Epub 2018 May 12.
Microalgae-based treatment systems have been successfully used for the polishing of domestic wastewater. Research is underway in studying the suitability of using these systems as main treatment units. This study focuses on comparing the performances of a mixed microalgal culture and an aerobic bacterial culture, based on the kinetic evaluation, in removing organic carbon from a kitchen wastewater. The two systems were operated at six different solid retention times (SRTs)-2, 4, 6, 8, 10, and 12 days in continuous mode. The influent and effluent samples were analyzed for chemical oxygen demand (COD), total organic carbon (TOC), total nitrogen (TN), phosphates, and surfactants. Steady-state kinetics (k, K, Y, and k) for organic carbon removal were obtained by fitting experimental data in linearized Michaelis-Menten and Monod equations. The mixed microalgal system showed similar or better performance in COD and TN removal (88 and 85%, respectively) when compared with the COD and TN removal by the aerobic bacterial system (89 and 48%). A maximum lipid yield of 40% (w/w of dry biomass) was observed in the microalgal system. Saturated fatty acids accounted for 50% of the total observed FAME species. The study indicates that the mixed microalgal culture is capable of treating kitchen wastewater and has the potential to replace aerobic bacteria in biological treatment systems in certain cases.
基于微藻的处理系统已成功用于生活污水的抛光。目前正在研究将这些系统用作主要处理单元的适宜性。本研究侧重于通过动力学评估,比较混合微藻培养物和需氧细菌培养物从厨房废水中去除有机碳的性能。这两个系统在连续模式下以六个不同的固体停留时间(SRT)-2、4、6、8、10 和 12 天运行。对进水和出水样品进行化学需氧量(COD)、总有机碳(TOC)、总氮(TN)、磷酸盐和表面活性剂分析。通过将实验数据拟合到线性米氏方程和 Monod 方程中,获得了有机碳去除的稳态动力学(k、K、Y 和 k)。与需氧细菌系统(分别为 89%和 48%)相比,混合微藻系统在 COD 和 TN 去除方面表现出相似或更好的性能(分别为 88%和 85%)。在微藻系统中观察到最大的脂质产率为 40%(干生物质的重量百分比)。饱和脂肪酸占总观察到的 FAME 种类的 50%。研究表明,混合微藻培养物能够处理厨房废水,并有可能在某些情况下替代生物处理系统中的需氧细菌。