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A co-beneficial system using aquatic plants: Bioethanol production from free-floating aquatic plants used for water purification

机译:使用水生植物的有益系统:从自由漂浮的水生植物生产生物乙醇用于水净化

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A co-beneficial system using constructed wetlands (CWs) planted with aquatic plants is proposed for bioethanol production and nutrient removal from wastewater. The potential for bioethanol production from aquatic plant biomass was experimentally evaluated. Water hyacinth and water lettuce were selected because of their high growth rates and easy harvestability attributable to their free-floating vegetation form. The alkaline/oxidative pretreatment was selected for improving enzymatic hydrolysis of the aquatic plants. Ethanol was produced with yields of 0.14-0.17 g-ethanol/g-biomass in a simultaneous saccharification and fermentation mode using a recombinant Escherichia coli strain or a typical yeast strain Saccharomyces cerevisiae. Subsequently, the combined benefits of the CWs planted with the aquatic plants for bioethanol production and nutrient removal were theoretically estimated. For treating domestic wastewater at 1,100 m~3/d, it was inferred that the anoxic-oxic activated sludge process consumes energy at 3,200 MJ/d, whereas the conventional activated sludge process followed by the CW consumes only 1,800 MJ/d with ethanol production at 115 MJ/d.
机译:提出了一种利用人工湿地(CW)和水生植物种植的有益系统,用于生产生物乙醇和从废水中去除营养。实验评估了水生植物生物质生产生物乙醇的潜力。选择水葫芦和生菜是因为它们具有高的生长速度和易于漂浮的植被形式,因此易于收获。选择碱/氧化预处理以改善水生植物的酶促水解。使用重组大肠杆菌菌株或典型的酵母菌株酿酒酵母,在同时糖化和发酵模式下,乙醇的产量为0.14-0.17 g-乙醇/ g生物量。随后,从理论上估计了与水生植物一起种植的化学武器对生物乙醇生产和营养去除的综合效益。对于1100 m〜3 / d的生活污水处理,可以推断出缺氧-氧化活性污泥工艺的能耗为3200 MJ / d,而常规的活性污泥工艺和CW的乙醇生产仅消耗1800 MJ / d。 115 MJ /天。

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