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Treatment of wastewater originating from aquaculture and biomass production in laboratory algae bioreactor using different carbon sources

机译:使用不同碳源处理实验室藻类生物反应器中来自水产养殖和生物质生产的废水

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摘要

The aim of present study was to explore the effect of different carbon sources on biomass accumulation in microalgae Nannochloropsis oculata and Tetraselmis chuii and their ability to remove N and P compounds during their cultivation in aquaculture wastewater. Microalgae cultivation was performed in laboratory bioreactor consisted from 500 mL Erlenmeyer flasks, containing 250 mL wastewater from semi closed recirculation aquaculture system. The cultures were maintained at room temperature (25-27ºC) on a fluorescent light with a light: dark photoperiod of 15 h: 9 h. The microalgae species were cultivated in wastewater with different carbon sources: glucose, lactose and saccharose. The growth of strains was checked for 96 h period. In the present study, N. oculata and T. chuii showed better growth in wastewater from aquaculture with saccharose carbon source during the experiment. The most effective reduce of nitrate and total nitrogen was proved in N. oculata cultivated in wastewater with glucose as carbon source. T. chuii cultivated in wastewater containing glucose showed 8.27% better cleaning effect in ammonium compared with N. oculata. T. chuii grew in wastewater with glucose as carbon source showed 19.5% better removal effect in phosphate compared with N. oculata strain.
机译:本研究的目的是探讨不同碳源对微藻Nannochloropsis oculata和Tetraselmis chuii中生物量积累的影响,以及它们在水产养殖废水培养过程中去除N和P化合物的能力。微藻培养是在实验室生物反应器中进行的,反应器由500 mL锥形瓶组成,其中装有来自半封闭式循环水产养殖系统的250 mL废水。将培养物保持在室温(25-27ºC)的荧光灯下,光照时间为15h:9h。微藻物种是在具有不同碳源(葡萄糖,乳糖和蔗糖)的废水中培养的。在96小时内检查菌株的生长。在本研究中,在实验过程中,含蔗糖碳源的水产养殖废水中的N. oculata和T. chuii表现出更好的生长。在以葡萄糖为碳源的废水中培养的N. oculata,证明了硝酸盐和总氮的最有效还原。在含葡萄糖的废水中培养的T. chuii在氨水中的清洁效果比N. oculata好8.27%。在以葡萄糖为碳源的废水中生长的T. chuii与N. oculata菌株相比,对磷酸盐的去除效果提高了19.5%。

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