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首页> 外文期刊>Journal of Cleaner Production >A semi-closed loop microalgal biomass production-platform for ethanol from renewable sources of nitrogen and phosphorous
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A semi-closed loop microalgal biomass production-platform for ethanol from renewable sources of nitrogen and phosphorous

机译:半闭环微藻生物质生产平台,可再生氮和磷源用于乙醇

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摘要

Production of microalgal biomass for feed and fuels demands unsustainable large amounts of fertilizers. The most broadly considered alternative sources of nutrients/fertilizer for microalgae are wastewater and internal recycling in closed-loop production platforms. However, these strategies largely disable co-production of feed and fuel in biomass biorefineries for an increased economic and environmental feasibility.In this study, we aimed at providing proof-of-concept for a semi-closed loop microalgal production-platform and biomass biorefinery for ethanol and feed from renewable resources of N and P. Atmospheric N-2 was assimilated into a N-2-fixing cyanobacterial biomass, which sustained growth of a microalga that accumulated high levels of carbohydrates (up to 60% (w/w)) as a sole source of fertilizer. The microalgal biomass was efficiently saccharified with H2SO4, which was recycled to release soluble PO4 from bone meal as a renewable source of P. Fermenting these P-enriched preparations with yeasts quantitatively produced ethanol at theoretical yields, a concentration of up to 50 g ethanol. L-1 and a yield of 0.25 g ethanol. g biomass(-1). Calculations suggested a potential yield from 7600 to 10,800 L ethanol. ha(-1). year(-1), under Buenos Aires environmental conditions, which would be higher than that currently obtained from maize feedstocks. The residual fermentation vinasse, supplemented with P and containing other downstream-process reagents, was recycled as a sole source of macronutrients for the cultivation of the N-2-fixing cyanobacterium to close the production cycle. Water recycling and co-production of residual biomass enriched in fat and protein as potential feed are also shown. This semi-closed loop biomass production-platform reconciles the concepts of microalgal biomass bio-refineries for the co-production of feedstocks for biofuels and feed and nutrients recycling in closed-loop systems that largely minimizes production of waste. (C) 2019 Elsevier Ltd. All rights reserved.
机译:用于饲料和燃料的微藻生物质的生产需要不可持续的大量肥料。微藻营养素/肥料的最广泛替代来源是废水和闭环生产平台中的内部循环利用。然而,这些策略在很大程度上不利于生物质生物炼制厂中原料和燃料的联合生产,从而增加了经济和环境可行性。在本研究中,我们旨在为半闭环微藻类生产平台和生物质生物炼制厂提供概念验证乙醇和来自N和P的可再生资源的饲料。大气中的N-2被吸收到固定N-2的蓝细菌生物质中,该生物质持续生长着微藻类,该微藻类积累了高水平的碳水化合物(高达60%(w / w)) )作为肥料的唯一来源。将微藻生物质有效地用H2SO4糖化,然后将其再循环以从骨粉中释放可溶的PO4,作为P的可再生来源。用酵母发酵这些富含P的制剂,以理论产量定量生产乙醇,浓度最高为50 g乙醇。 L-1,产率为0.25 g乙醇。 g生物量(-1)。计算表明,潜在的乙醇产量为7600至10,800L。 ha(-1)。 (-1)年,在布宜诺斯艾利斯的环境条件下,将高于目前从玉米原料获得的环境条件。补充了磷并含有其他下游工艺试剂的残留发酵酒糟被循环利用作为大量营养素的唯一来源,用于培养固定N-2-的蓝藻细菌,以结束生产周期。还显示了水循环利用和共同生产富含脂肪和蛋白质的残留生物质作为潜在饲料。这种半闭环生物质生产平台协调了微藻生物质生物精炼厂的概念,可以在闭环系统中共同生产生物燃料原料以及饲料和养分循环利用,从而最大程度地减少废物的产生。 (C)2019 Elsevier Ltd.保留所有权利。

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