Department of Environmental Science and Engineering, Fudan University, Shanghai 200433, PR China.
Bioresour Technol. 2013 Jul;139:292-9. doi: 10.1016/j.biortech.2013.04.054. Epub 2013 Apr 22.
Biogas is an environment-friendly fuel but that must be upgraded before being utilized. The method about removing CO2 from biogas by microalgal culturing using biogas effluent as nutrient medium in this study could effectively upgrade biogas and simultaneously reduce the biogas effluent nutrient. Results showed that the optimum parameters for microalgal growth and biogas effluent nutrient reduction was moderate light intensity with middle photoperiod. While low light intensity with long photoperiod and moderate light intensity with middle photoperiod obtained the best biogas CO2 removal and biogas upgrade effects. Therefore, the optimal parameters were moderate light intensity 350 μmol m(-2)s(-1) with middle photoperiod 14 h light:10h dark. Under this condition, the microalgal dry weight, CH4 concentration, reduction efficiency of chemical oxygen demand, total nitrogen, and total phosphorus was 615.84 ± 33.07 mg L(-1), 92.16 ± 2.83% (v/v), 88.74 ± 3.45%, 83.94 ± 3.51%, and 80.43 ± 4.17%, respectively.
沼气是一种环保燃料,但在使用之前必须进行升级。本研究利用沼气作为营养基质培养微藻去除沼气中的二氧化碳的方法可以有效地升级沼气,同时减少沼气废水中的营养物质。结果表明,适度光照强度和中光照周期是微藻生长和沼气废水中营养物质去除的最佳参数。而低光照强度和长光照周期以及适度光照强度和中光照周期则获得了最佳的沼气 CO2 去除和沼气升级效果。因此,最佳参数为 350 μmol m(-2)s(-1)的适度光照强度和 14 h 光照:10 h 黑暗的中光照周期。在这种条件下,微藻的干重、CH4 浓度、化学需氧量去除效率、总氮和总磷分别为 615.84 ± 33.07 mg L(-1)、92.16 ± 2.83%(v/v)、88.74 ± 3.45%、83.94 ± 3.51%和 80.43 ± 4.17%。