首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Characterization of a microalga Chlorella sp. well adapted to highly concentrated municipal wastewater for nutrient removal and biodiesel production
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Characterization of a microalga Chlorella sp. well adapted to highly concentrated municipal wastewater for nutrient removal and biodiesel production

机译:微藻小球藻属的表征。非常适合于高浓度的城市废水以去除营养物和生产生物柴油

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The feasibility of growing Chlorella sp. in the centrate, a highly concentrated municipal wastewater stream generated from activated sludge thickening process, for simultaneous wastewater treatment and energy production was tested. The characteristics of algal growth, biodiesel production, wastewater nutrient removal and the viability of scale-up and the stability of continuous operation were examined. Two culture media, namely autoclaved centrate (AC) and raw centrate (RC) were used for comparison. The results showed that by the end of a 14-day batch culture, algae could remove ammonia, total nitrogen, total phosphorus, and chemical oxygen demand (COD) by 93.9%, 89.1%, 80.9%, and 90.8%, respectively from raw centrate, and the fatty acid methyl ester (FAME) content was 11.04% of dry biomass providing a biodiesel yield of 0.12. g-biodiesel/L-algae culture solution. The system could be successfully scaled up, and continuously operated at 50% daily harvesting rate, providing a net biomass productivity of 0.92. g-algae/(L day).
机译:小球藻生长的可行性。在浓缩液中,测试了由活性污泥浓缩过程产生的高浓度市政废水,用于同时处理废水和生产能源。考察了藻类生长,生物柴油生产,废水中营养物去除的特性以及扩大规模的可行性和连续运行的稳定性。比较使用两种培养基,即高压灭菌的离心液(AC)和原始的离心液(RC)。结果表明,在14天的分批培养结束时,藻类可以从生料中分别去除氨,总氮,总磷和化学需氧量(COD)分别为93.9%,89.1%,80.9%和90.8%。浓缩液中的脂肪酸甲酯含量为干生物质的11.04%,生物柴油收率为0.12。 g-生物柴油/ L-藻类培养液。该系统可以成功扩大规模,并以50%的每日收获率连续运行,从而提供0.92的净生物量生产率。 g-藻类/(L天)。

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