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Carbon dioxide bio-fixation and wastewater treatment via algae photochemical synthesis for biofuels production

机译:通过藻类光化学合成进行二氧化碳生物固定和废水处理,以生产生物燃料

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摘要

We are faced with the problem of energy/carbon dioxide (CO2) in the coming decades. Microalgae has been considered as one of the most promising biomass feedstocks for the production of biofuels. Meanwhile, the productivity of these photosynthetic microorganisms in converting CO2 into carbon-rich lipids, which are only a step or two away from biodiesel, significantly exceed that of agricultural crops without competing for arable land. Worldwide, research and demonstration programs are being carried out to develop the technologies required to expand algal lipid production from a craft to a major industrial process. This paper describes the recent advances on microalgae used for biofuel (e. g., biohydrogen, biodiesel and bioethanol) production, including their cultivation, harvesting, and processing. In addition, the various aspects associated with the design of microalgae production units are described, providing an overview of the current state of the development of algae cultivation systems (photobioreactors and open ponds). Algal cultivation systems integrated with algae-based biorefineries could yield diverse bioresources, such as biodiesel, green gasoline, bio-jet fuel, isolated proteins, food starches, textiles, organic fertilizers, which can mitigate the costs of biofuel production. Algae cultivation becomes a closed-loop engineered ecosystem by utilizing the energy, nutrients and CO2 held within residual waste materials to provide all necessary inputs except sunlight. Consequently, developing this biotechnology is a tangible step towards a waste-free sustainable society.
机译:在未来几十年中,我们将面临能源/二氧化碳(CO2)问题。微藻被认为是生产生物燃料的最有前途的生物质原料之一。同时,这些光合微生物将二氧化碳转化为富含碳的脂质的生产力(仅距生物柴油仅一两个步骤),大大超过了农作物,而没有争夺耕地。在全球范围内,正在进行研究和示范计划,以开发将藻类脂质生产从手工业扩大到主要工业过程所需的技术。本文描述了用于生物燃料(例如,生物氢,生物柴油和生物乙醇)的微藻类的最新进展,包括其种植,收获和加工。另外,还描述了与微藻生产单元设计相关的各个方面,概述了藻类培养系统(光生物反应器和开放式池塘)的发展现状。与基于藻类的生物精炼厂集成的藻类培养系统可以产生多种生物资源,例如生物柴油,绿色汽油,生物喷气燃料,分离的蛋白质,食品淀粉,纺织品,有机肥料,这些可以减轻生物燃料生产的成本。通过利用残留在废物中的能量,养分和CO2来提供除藻类之外的所有必要输入,藻类栽培成为一个闭环工程生态系统。因此,开发这种生物技术是迈向无浪费的可持续社会的切实步骤。

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  • 来源
    《RSC Advances》 |2014年第91期|共51页
  • 作者

    Shen Yafei;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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