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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Phytoremediation of agriculture runoff by filamentous algae poly-culture for biomethane production, and nutrient recovery for secondary cultivation of lipid generating microalgae
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Phytoremediation of agriculture runoff by filamentous algae poly-culture for biomethane production, and nutrient recovery for secondary cultivation of lipid generating microalgae

机译:通过丝状藻类多菌种对农业径流进行植物修复以生产生物甲烷,并进行养分回收以进行生脂微藻的二次培养

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An integrated system was implemented for water phytoremediation and biofuel production through sequential cultivation of filamentous algae followed by cultivation of lipid-producing microalgae Chlorella sorokiniana. Natural poly-culture of filamentous algae was grown in agricultural stormwater using the Algal Turf Scrubber (R), harvested and subjected for lipid extraction and/or methane production using anaerobic digestion (AD). While filamentous algae lipid content was too low for feasible biodiesel production (<2%), both whole biomass and lipid-extracted algal residues (LEA) yielded similar to 0.2 L methane per gVS at loading rates up to 5 g VS/L-day. Importantly, essential macro-nutrients and trace elements captured from stormwater were released into the AD effluent as soluble nutrients and were successfully tested as fertilizer replacement for cultivation of lipid-accumulating C. sorokiniana in a subsequent stage. Accordingly, filamentous algae poly-culture was exploited for waste nutrient capturing and biofuel feedstock generation. These nutrients were recovered and reused as a concentrated supplement for potentially high-value microalgae. Published by Elsevier Ltd.
机译:通过依次培养丝状藻类,然后培养产脂微藻,绿藻小球藻,实现了用于水生植物修复和生物燃料生产的集成系统。丝状藻类的天然多培养物使用Altur TurfScrubber®在农业雨水中生长,收获后进行厌氧消化(AD)进行脂质提取和/或甲烷生产。虽然丝状藻类的脂质含量太低,无法进行可行的生物柴油生产(<2%),但整个生物量和脂质提取的藻类残留物(LEA)在加载速率高达5 g VS / L-day时,每gVS产生的甲烷量接近0.2 L 。重要的是,从雨水中捕获的必需的大量养分和微量元素以可溶性养分的形式释放到AD废水中,并成功地作为肥料替代品进行测试,以在下一阶段培养积累脂质的梭菌。因此,丝状藻类的多元培养被用于废物养分的捕获和生物燃料原料的产生。这些营养素被回收并作为浓缩补品用于潜在的高价值微藻。由Elsevier Ltd.发布

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