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Carbon-dioxide biofixation and phycoremediation of municipal wastewater using Chlorella vulgaris and Scenedesmus obliquus

机译:使用<重点型=“斜体”>小黄类和<重点类型=“斜体”> Cheredesmus Obliquus Chlerella obliquus

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摘要

The pure cultures of microalgae Chlorella vulgaris ATCC 13482 and Scenedesmus obliquus FACHB 417 were grown in municipal wastewater in 7-L airlift bubble column photobioreactor supplied with 5% CO~(2)/air ( v / v ). Batch experiments were conducted at 25?°C with 14-h light/10-h dark cycle for a period of 10?days. The CO~(2)capture efficiencies for both the microalgae were monitored in terms of their respective biomass productivities, carbon contents, and CO~(2)consumption rates. In the present study, the initial concentration of ammonia (43.7?mg?L_(?1)) was decreased to 2.9 and 3.7?mg L_(?1)by C. vulgaris and S. obliquus , respectively. And, the initial concentration of phosphate (18.5?mg?L_(?1)) was decreased to 1.1 and 1.6?mg?L_(?1)by C. vulgaris and S. obliquus , respectively. CO~(2)biofixation rates by C. vulgaris and S. obliquus , cultivated in municipal wastewater, were calculated to be 140.91 and 129.82?mg?L_(?1)?day_(?1), respectively. The findings from the present study highlight the use of microalgae for wastewater treatment along with CO~(2)uptake and biomass utilization for pilot scale production of biodiesel, biogas, feed supplements for animals, etc., thus minimizing the production costs.
机译:Microalgae Chllarla VallaLALLALALLA ATCC 13482和Scenedesmus Obliquus Fachb 417的纯培养物在7-L Airlift泡柱光生物反应器中生长在5%CO〜(2)/空气(v / v)中。分批实验在25℃下进行14小时光/ 10-H黑色循环,为10?天。根据其各自的生物质生产性,碳含量和CO〜(2)消耗率,监测微藻的CO〜(2)捕获效率。在本研究中,氨的初始浓度(43.7μmg≤1℃)分别通过C.Vulgaris和S.倾斜度降低至2.9和3.7?Mg L _(α1)。并且,磷酸盐的初始浓度(18.5×mg?1×1(α1))分别由C.Vulgaris和S.倾斜分别降低至1.1和1.6毫克α1_(α1)。 C4(2)C. Ventgaris和S. Obsiquus的生物混合率,在市政废水中培养,计算为140.91和129.82?MG?L _(?1)?日_(?1)。本研究的发现突出了微血糖用于废水处理以及CO〜(2)的摄取和生物质利用,用于生物柴油,沼气,动物饲料补充剂等的试验规模生产,从而最大限度地减少了生产成本。

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