Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education, China), School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, PR China.
Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education, China), School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, PR China.
Sci Total Environ. 2020 Aug 25;732:139032. doi: 10.1016/j.scitotenv.2020.139032. Epub 2020 Apr 28.
A novel integrated microalgae and activated sludge (MA/AS) system was constructed to minimize greenhouse gas emission from traditional wastewater treatment plants. Its removal properties for aqueous pollutants were assessed as well. The ratio of microalgae-to-activated sludge volatile suspended solids of 1.3 and an incident light intensity of 12 W/m provided the best performance: COD, NH, and total phosphorus (TP) removals were up to 100%, 99.6% and 100%, respectively. Even without illumination, COD, NH, and TP removal efficiencies were as high as 95.1%, 96.5% and 100%, respectively. In both cases, nutrient uptake by MA was proved to play an important role in nutrients removal. And no CH or NO emissions were detected during the whole experimental period of the MA/AS system (mass ratio of 1.3:1). Only negligible CO was detected up to 45 μmol with illumination and 130 μmol without illumination in the headspace of the serum bottles, which merely accounted for 2.0% and 5.8% of the initial total carbon equivalent (glucose serving as organic carbon source). Since photosynthesis by microalgae could provide oxygen to heterotrophs or nitrifying bacteria, extra energy demand (mainly from aeration units) could be greatly cut down, which would heavily reduce the total energy demands and further indirect CO emission from wastewater treatment plants. Our integrated system is demonstrated to be a sustainable approach for contaminants removal from aqueous phase, restraining greenhouse gas emission and saving energy consumption contemporaneously.
一种新型的微藻-活性污泥(MA/AS)一体化系统被构建用于最小化传统污水处理厂的温室气体排放。同时评估了其对水污染物的去除性能。当微藻-活性污泥挥发性悬浮固体比为 1.3,光照强度为 12 W/m 时,系统表现出最佳性能:COD、NH 和总磷(TP)的去除率分别高达 100%、99.6%和 100%。即使没有光照,COD、NH 和 TP 的去除率也分别高达 95.1%、96.5%和 100%。在这两种情况下,MA 的营养吸收被证明在去除营养物质方面发挥了重要作用。并且在整个 MA/AS 系统的实验期间(质量比为 1.3:1),没有检测到 CH 或 NO 的排放。只有在光照下检测到的 CO 可达 45 μmol,在没有光照的血清瓶中检测到的 CO 可达 130 μmol,这仅占初始总碳当量(葡萄糖作为有机碳源)的 2.0%和 5.8%。由于微藻的光合作用可以为异养生物或硝化细菌提供氧气,因此可以大大减少额外的能源需求(主要来自曝气设备),这将大大降低污水处理厂的总能源需求,并进一步减少间接的 CO 排放。我们的集成系统被证明是一种从水相中去除污染物、抑制温室气体排放和节约能源消耗的可持续方法。