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Chlorella vulgaris vs cyanobacterial biomasses: Comparison in terms of biomass productivity and biogas yield

机译:小球藻与蓝藻生物质:在生物质生产力和沼气产量方面的比较

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摘要

The aim of the present study was to compare cyanobacteria strains [Aphanizomenon ovalisporum, Anabaena planctonica, Borzia trilocularis and Synechocystis sp.) and microalgae (Chlorella vulgaris) in terms of growth rate, biochemical profile and methane production. Cyanobacteria growth rate ranged 0.5-0.6 day"1 for A planctonica, A. ovalisporum and Synecochystis sp. and 0.4 day~(-1) for B. tricularis. Opposite, C. vulgaris maximum growth rate was double (1.2 day~(-1)) than that of cyanobacteria. Regarding the methane yield, microalgae C. vulgaris averaged 120 mL CH_4 g COD in~(-1) due to the presence of a strong cell wall. On the other hand, anaerobic digestion of cyanobacteria supported higher methane yields. B. trilocularis and A. planctonica presented 1.42-fold higher methane yield than microalgae while this value was raised to approximately 1.85-fold for A. ovalisporum and Synechochystis sp. In the biogas production context, this study showed that the low growth rates of cyanobacteria can be overcome by their increased anaerobic digestibility when compared to their microalgae counterpartners, such is the case of C. vulgaris.
机译:本研究的目的是在生长速率,生化特征和甲烷产生方面比较蓝细菌菌株(椭圆形假单胞菌,扁平鱼腥藻,百日咳波氏菌和小球藻)和微藻类(小球藻)。蓝藻的生长速度在浮游杆菌,卵形孢霉和Synecochystis sp。范围为0.5-0.6天“ 1,而对三眼芽孢杆菌则为0.4天〜(-1)。相反,寻常小球藻的最大生长速率是两倍(1.2天〜(- 1))比蓝细菌的甲烷产量高,由于藻类细胞壁的存在,微藻的普通藻在〜(-1)中的平均COD in〜(-1)为120 mL CH_4 g COD;另一方面,蓝藻的厌氧消化可以提高甲烷的产量。B. trilocularis和A. Planctonica的甲烷产量比微藻高1.42倍,而卵圆孢菌和Synechochystis sp的甲烷产量提高到约1.85倍。与微藻对应物相比,蓝藻细菌的厌氧消化率可以提高,从而克服了蓝藻细菌的繁殖率,例如寻常梭菌。

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