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Energetic valorization of algal biomass in a hybrid anaerobic reactor

机译:混合厌氧反应器中藻类生物质的能量平衡

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This study evaluated the operation of a hybrid anaerobic reactor fed with algal biomass cultivated in effluent from the brewery industry. Three stages of operation were distinguished during the 72 days of semi-continuous functioning of the reactor: Stage 1 (S1), in which algal biomass was used as substrate; Stage 2 (S2), in which 10% (v/v) of the algal biomass was substituted by olive mill wastewater (OMW); and Stage 3 (S3), in which algal biomass was heat pre-treated. During S1, a loss of solids was observed, with an increment of organic matter in the outlet. The substitution of 10% of the volume of algal biomass by OMW tripled the methane productivity obtained in the previous stage by digestion of pure algal biomass. Heat pre-treatment was not efficient in rupturing the cell wall, and consequently did not have any effect on the increase in biogas production. The complementarity of substrates in the assessed conditions led to better results than the pre-treatment of the algal biomass.
机译:这项研究评估了混合厌氧反应器的运行情况,该反应器供入了来自啤酒工业废水中的藻类生物质。在反应器半连续运行的72天中,将操作分为三个阶段:阶段1(S1),其中藻类生物质用作底物;步骤2(S2),其中10%(v / v)的藻类生物质被橄榄磨坊废水(OMW)替代;阶段3(S3),其中对藻类生物质进行了热处理。在S1期间,观察到固体损失,出口有机物增加。 OMW取代了藻类生物质10%的体积,将之前阶段通过消化纯藻类生物质获得的甲烷生产率提高了三倍。加热预处理不能有效地破裂细胞壁,因此对沼气产量的增加没有任何影响。与藻类生物质的预处理相比,在评估条件下底物的互补性导致更好的结果。

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