Department of Environmental Engineering, Technical University of Denmark, Building 113, 2800 Kgs. Lyngby, Denmark.
Department of Environmental Engineering, Technical University of Denmark, Building 113, 2800 Kgs. Lyngby, Denmark.
Water Res. 2015 May 15;75:301-11. doi: 10.1016/j.watres.2015.02.022. Epub 2015 Feb 26.
Industrial wastewaters can serve as a nutrient and water source for microalgal production. In this study the effluent of an internal circulation (IC) reactor anaerobically treating the wastes of a biotechnology production facility were chosen as the cultivation medium for Chlorella sorokiniana in batch and continuous cultures. The aim was to evaluate the rates of nutrient removal and biomass production possible at various dilution rates. The results demonstrate that the industrial wastewater served as a highly effective microalgae culture medium and that dilution rate strongly influenced algae productivity in a short light-path photobioreactor. Batch culture on undiluted wastewater showed biomass productivity of 1.33 g L(-1)day(-1), while removing over 99% of the ammonia and phosphate from the wastewater. Deceleration-stat (D-stat) experiments performed at high and low intensities of 2100 and 200 (μmol photon m(2)s(-1)) established the optimal dilution rates to reach volumetric productivity of 5.87 and 1.67 g L(-1)day(-1) respectively. The corresponding removal rates of nitrogen were 238 and 93 mg L(-1)day(-1) and 40 and 19 mg L(-1)day(-1) for phosphorous. The yield on photons at low light intensity was as high as had been observed in any previous report indicating that the waste stream allowed the algae to grow at its full potential.
工业废水可为微藻生产提供养分和水源。本研究选用内部循环(IC)反应器厌氧处理生物技术生产设施废物的流出物作为小球藻分批和连续培养的培养基。目的是评估在不同稀释率下去除营养物和生物量生产的速率。结果表明,工业废水是一种非常有效的微藻培养基,在短光程光生物反应器中稀释率强烈影响藻类生产力。在未经稀释的废水中进行批式培养,生物质生产率为 1.33 g L(-1)day(-1),同时从废水中去除了超过 99%的氨和磷酸盐。在 2100 和 200 μmol 光子 m(2)s(-1)的高、低光强下进行的减速状态(D-stat)实验确定了达到 5.87 和 1.67 g L(-1)day(-1)的容积生产率的最佳稀释率。相应的氮去除率分别为 238 和 93 mg L(-1)day(-1)和 40 和 19 mg L(-1)day(-1)。在低光强下的光子产率与以往任何报告中的最高产率相当,表明废物流允许藻类充分发挥其生长潜力。