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Capability of different microalgae species for phytoremediation processes: Wastewater tertiary treatment, CO2 bio-fixation and low cost biofuels production

机译:不同微藻物种对植物化方法的能力:废水三级处理,CO2生物固定和低成本生物燃料生产

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摘要

Scenedesmus obliquus, Chlorella vulgaris, Chlorella kessleri and a natural Bloom were cultivated in batch experiments, under controlled conditions, in urban wastewater (WW) and synthetic wastewater (SW) under 5% CO2 in air, with the object of estimating their capacity for nutrient removal, carbon dioxide biofixation, and generation of valuable biomass. In both culture media, the Bloom (Bl) and Scenedesmus (Sc) showed higher final biomass concentration (dried weight, dw) than the other species; the maximum yield obtained was 1950 ± 243 mg L−1 for Bl and the minimum 821 ± 88 mg L−1 for Cv, both in synthetic wastewater. Maximum specific growth rate values do not show significant differences between any of the 4 strains tested (p ≤ 0.05), nor between the 2 culture media. A new homogeneous method of calculating productivities has been proposed. Nitrogen removal in all the reactors was higher than 90%, except for BlSW (79%), and for phosphorus, the removal was higher than 98% in all trials. Maximum CO2 consumption rates reached were 424.4 and 436.7 mg L−1 d−1 for ScSW and ScWW respectively.
机译:斜生栅藻,小球藻,小球藻kessleri和天然布卢姆是在间歇实验在空气中5%CO 2下进行培养,在受控条件下,城市污水(WW)和合成废水(SW)中,与估计其对养分的能力的对象去除,二氧化碳biofixation,和产生有价值的生物质。在这两种培养基中,所述布隆(B1)和栅藻(SC)显示出比其它物种更高的最终生物质浓度(干重,DW);获得的最大产率是对1950年B1中±243毫克L-1和最小821±88毫克的L-1个CV,两者合成废水英寸最大比生长速率的值没有显示出任何的4株测试(P≤0.05)之间的差异显著,也不是2种培养基之间。计算生产力的新方法齐已经提出。除氮在所有的反应器中高于90%,除了BLSW(79%),而对于磷,除去在所有试验中高于98%。达到最大CO2消耗率分别为424.4和436.7毫克L-1 d-1 SCSW和ScWW分别。

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