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Biofuels from microalgae-A review of technologies for production, processing, and extractions of biofuels and co-products

机译:来自微藻类的生物燃料-生物燃料和副产品生产,加工和提取技术的回顾

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摘要

Sustainability is a key principle in natural resource management, and it involves operational efficiency, minimisation of environmental impact and socio-economic considerations; all of which are interdependent. It has become increasingly obvious that continued reliance on fossil fuel energy resources is unsustainable, owing to both depleting world reserves and the green house gas emissions associated with their use. Therefore, there are vigorous research initiatives aimed at developing alternative renewable and potentially carbon neutral solid, liquid and gaseous biofuels as alternative energy resources. However, alternate energy resources akin to first generation biofuels derived from terrestrial crops such as sugarcane, sugar beet, maize and rapeseed place an enormous strain on world food markets, contribute to water shortages and precipitate the destruction of the world's forests. Second generation biofuels derived from lignocellulosic agriculture and forest residues and from nonfood crop feedstocks address some of the above problems; however there is concern over competing land use or required land use changes. Therefore, based on current knowledge and technology projections, third generation biofuels specifically derived from microalgae are considered to be a technically viable alternative energy resource that is devoid of the major drawbacks associated with first and second generation biofuels. Microalgae are photosynthetic microorganisms with simple growing requirements (light, sugars, CO_2, N, P, and K) that can produce lipids, proteins and carbohydrates in large amounts over short periods of time. These products can be processed into both biofuels and valuable co-products.rnThis study reviewed the technologies underpinning microalgae-to-biofuels systems, focusing on the biomass production, harvesting, conversion technologies, and the extraction of useful co-products. It also reviewed the synergistic coupling of microalgae propagation with carbon sequestration and wastewater treatment potential for mitigation of environmental impacts associated with energy conversion and utilisation. It was found that, whereas there are outstanding issues related to photosynthetic efficiencies and biomass output, microalgae-derived biofuels could progressively substitute a significant proportion of the fossil fuels required to meet the growing energy demand.
机译:可持续性是自然资源管理中的关键原则,涉及运营效率,对环境的影响最小化和社会经济因素;所有这些都是相互依存的。越来越明显的是,由于世界储备的枯竭和与其使用相关的温室气体排放,持续依赖化石燃料能源已变得不可持续。因此,有强有力的研究计划旨在开发替代可再生能源和潜在的碳中性固体,液体和气体生物燃料作为替代能源。但是,类似于从陆地作物中获取的第一代生物燃料(例如甘蔗,甜菜,玉米和油菜籽)的替代能源资源给世界粮食市场造成了巨大压力,导致水资源短缺,加剧了世界森林的破坏。来自木质纤维素农业和森林残留物以及来自非粮食作物原料的第二代生物燃料解决了上述一些问题;但是,人们担心土地使用竞争或需要改变土地使用方式。因此,基于当前的知识和技术预测,特别地从微藻类衍生的第三代生物燃料被认为是技术上可行的替代能源,其没有与第一代和第二代生物燃料相关的主要缺点。微藻是具有简单生长需求(光,糖,CO_2,N,P和K)的光合微生物,可以在短时间内大量产生脂质,蛋白质和碳水化合物。这些产品既可以加工成生物燃料,也可以加工成有价值的副产品。本研究回顾了微藻转化为生物燃料系统的基础技术,重点是生物量的生产,收获,转化技术以及有用的副产品的提取。它还审查了微藻繁殖与固碳和废水处理潜力的协同耦合作用,以减轻与能源转换和利用相关的环境影响。人们发现,尽管存在与光合作用效率和生物量输出有关的突出问题,但微藻类生物燃料可以逐步替代满足日益增长的能源需求所需的大量化石燃料。

著录项

  • 来源
    《Renewable & Sustainable Energy Reviews》 |2010年第2期|557-577|共21页
  • 作者

    Liam Brennan; Philip Owende;

  • 作者单位

    Charles Parsons Energy Research Programme, Bioresources Research Centre. School of Agriculture, Food Science and Veterinary Medicine, University College Dublin, Belfield, Dublin 4, Ireland;

    Charles Parsons Energy Research Programme, Bioresources Research Centre. School of Agriculture, Food Science and Veterinary Medicine, University College Dublin, Belfield, Dublin 4, Ireland School of Informatics and Engineering, Institute of Technology Blanchardstown, Blanchardstown Road North, Dublin 15, Ireland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microalgae; biomass recovery; bioenergy; conversion; photobioreactor; CO_2 sequestration;

    机译:微藻生物量回收;生物能源转换光生物反应器固存CO_2;
  • 入库时间 2022-08-18 01:24:43

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