Life Cycle Assessment (LCA) of Third-Generation Biodiesel Produced Heterotrophically by Phormidium Autumnale

Stefania Siqueira, Mariany C. Deprá, L. Q. Zepka, E. Jacob‐Lopes
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引用次数: 12

Abstract

The aim of this work was to perform a prospective life cycle assessment of the third-generation biodiesel (3G) produced from the heterotrophic cultivation of Phormidium autumnale, using sucrose as the carbon source. The study focused on the optimization of the process parameters, in the life cycle assessment and in the biofuel quality analysis in diverse microalgae-based scenarios. In the best scenario, the production of microalgal biodiesel has positive energy production (50.59 MJ/kg) associated with low consumption of water (28.38 m3/kg) and low CO2 emissions (9.18 kg CO2-eq/kg). In terms of composition, this oil was predominantly saturated (45.20%), monounsaturated (34.70%), and polyunsaturated (19.90%), resulting in a biodiesel that complies with U.S., European, and Brazilian standards. The high potential capacity for lipid production obtained is interesting for the generation of quality biodiesel that meets or surpasses the most stringent U.S., European, and Brazilian fuel standard requirements.
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第三代黄堇异养生产生物柴油的生命周期评价
本研究的目的是对以蔗糖为碳源的异养栽培秋兰生产的第三代生物柴油(3G)进行前瞻性生命周期评估。研究重点是在不同微藻环境下的工艺参数优化、生命周期评估和生物燃料质量分析。在最佳情况下,微藻生物柴油的生产具有正能量产量(50.59 MJ/kg)、低耗水量(28.38 m3/kg)和低二氧化碳排放(9.18 kg CO2-eq/kg)。在成分方面,该油主要是饱和(45.20%),单不饱和(34.70%)和多不饱和(19.90%),从而产生符合美国,欧洲和巴西标准的生物柴油。所获得的高潜在脂质生产能力对于生产符合或超过最严格的美国、欧洲和巴西燃料标准要求的高质量生物柴油是有趣的。
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