González-Camejo J, Barat R, Pachés M, Murgui M, Seco A, Ferrer J
a Instituto de Ingeniería del Agua y Medio Ambiente, IIAMA, Universitat Politècnica de València , Valencia , Spain.
b Departamento de Ingeniería Química , Universitat de València, Avinguda de la Universitat , Valencia , Spain.
Environ Technol. 2018 Feb;39(4):503-515. doi: 10.1080/09593330.2017.1305001. Epub 2017 Mar 27.
The aim of this study was to evaluate the effect of light intensity and temperature on nutrient removal and biomass productivity in a microalgae-bacteria culture and their effects on the microalgae-bacteria competition. Three experiments were carried out at constant temperature and various light intensities: 40, 85 and 125 µE m s. Other two experiments were carried out at variable temperatures: 23 ± 2°C and 28 ± 2°C at light intensity of 85 and 125 µE m s, respectively. The photobioreactor was fed by the effluent from an anaerobic membrane bioreactor. High nitrogen and phosphorus removal efficiencies (about 99%) were achieved under the following operating conditions: 85-125 µE m s and 22 ± 1°C. In the microalgae-bacteria culture studied, increasing light intensity favoured microalgae growth and limited the nitrification process. However, a non-graduated temperature increase (up to 32°C) under the light intensities studied caused the proliferation of nitrifying bacteria and the nitrite and nitrate accumulation. Hence, light intensity and temperature are key parameters in the control of the microalgae-bacteria competition. Biomass productivity significantly increased with light intensity, reaching 50.5 ± 9.6, 80.3 ± 6.5 and 94.3 ± 7.9 mgVSS L d for a light intensity of 40, 85 and 125 µE m s, respectively.
本研究的目的是评估光强和温度对微藻-细菌培养物中营养物去除及生物质生产力的影响,以及它们对微藻-细菌竞争的影响。在恒温及不同光强下进行了三个实验:40、85和125 μE m s。另外两个实验分别在85和125 μE m s的光强下于可变温度(23±2°C和28±2°C)下进行。光生物反应器由厌氧膜生物反应器的出水进料。在85 - 125 μE m s和22±1°C的以下操作条件下实现了高氮和磷去除效率(约99%)。在所研究的微藻-细菌培养物中,增加光强有利于微藻生长并限制硝化过程。然而,在所研究的光强下非梯度升温(高达32°C)导致硝化细菌增殖以及亚硝酸盐和硝酸盐积累。因此,光强和温度是控制微藻-细菌竞争的关键参数。生物质生产力随光强显著增加,对于40、85和125 μE m s的光强,分别达到50.5±9.6、80.3±6.5和94.3±7.9 mgVSS L d。