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Technoeconomic analysis of an integrated microalgae photobioreactor, biodiesel and biogas production facility

机译:综合微藻光生物反应器,生物柴油和沼气生产设施的技术经济分析

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摘要

As fossil fuel prices increase and environmental concerns gain prominence, the development of alternative fuels from biomass has become more important. Biodiesel produced from microalgae is becoming an attractive alternative to share the role of petroleum. Currently it appears that the production of microalgal biodiesel is not economically viable in current environment because it costs more than conventional fuels. Therefore, a new concept is introduced in this article as an option to reduce the total production cost of microalgal biodiesel. The integration of biodiesel production system with methane production via anaerobic digestion is proved in improving the economics and sustainability of overall biodiesel stages. Anaerobic digestion of microalgae produces methane and further be converted to generate electricity. The generated electricity can surrogate the consumption of energy that require in microalgal cultivation, dewatering, extraction and transesterification process. From theoretical calculations, the electricity generated from methane is able to power all of the biodiesel production stages and will substantially reduce the cost of biodiesel production (33% reduction). The carbon emissions of biodiesel production systems are also reduced by approximately 75% when utilizing biogas electricity compared to when the electricity is otherwise purchased from the Victorian grid. The overall findings from this study indicate that the approach of digesting microalgal waste to produce biogas will make the production of biodiesel from algae more viable by reducing the overall cost of production per unit of biodiesel and hence enable biodiesel to be more competitive with existing fuels.
机译:随着化石燃料价格的增加和环境涉及突出,生物质的替代燃料的发展变得更加重要。从微藻产生的生物柴油正在成为分享石油的作用的有吸引力的替代方案。目前,似乎微藻生物柴油的生产在当前环境中在经济上不可行,因为它比常规燃料成本多。因此,本文中介绍了一种新概念,作为减少微藻生物柴油总生产成本的选项。通过厌氧消化的生物柴油生产系统与甲烷生产的整合,提高了整体生物柴油阶段的经济学和可持续性。微藻的厌氧消化产生甲烷并进一步转化以产生电力。产生的电力可以代替微藻培养,脱水,提取和酯交换过程中需要的能量消耗。从理论计算中,从甲烷产生的电力能够为所有生物柴油生产阶段供电,并将大大降低生物柴油生产成本(减少33%)。与在维多利亚时代网格中以其他方式购买电网时,生物柴油生产系统的碳排放量也减少了大约75%。本研究的整体结果表明,消化微藻废物以产生沼气的方法将通过降低每单位生物柴油的总成本,从藻类中生产生物柴油,因此使生物柴油能够与现有燃料更竞争。

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