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漂浮式光生物反应器在微藻培养中的发展进展及其应用潜力。

Progress on the development of floating photobioreactor for microalgae cultivation and its application potential.

机构信息

School of Bioengineering, Dalian University of Technology, Dalian, 116024, China.

State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian, 116024, China.

出版信息

World J Microbiol Biotechnol. 2019 Nov 21;35(12):190. doi: 10.1007/s11274-019-2767-x.

Abstract

Microalgae present great potential to replace land crops for the efficient production of large volumes of biomass for food, feed, fuels, and chemicals, as well as to treat wastewater and capture carbon. However, the commercialization of these technologies for bulk commodities requires a great reduction in the current microalgal biomass production cost. The bioreactor is the core of bioprocess engineering and is the premise for the commercial application of certain types of biotechnology. The challenges of phototrophic cultivation are completely different from those of heterotrophic processes because the efficiency of phototrophic cultivation is limited by the energy density of the input sunlight and the inorganic carbon supply. Thus, the development of microalgae cultivation technologies with low manufacturing and operating costs is key to addressing this problem, and floating photobioreactors (PBRs) are a promising solution. PBRs are deployed on the water surface without any land requirements, and wave energy provides free mixing energy. Additionally, the surrounding water can be used to control the culture temperature and to supply nutrients for microalgae growth. In this mini-review, the development of floating PBRs and their recent progress are presented. The effect of the carbon supply approach on the mixing and scaling-up of floating PBRs are critically discussed. The limitations and challenges in commercial applications of floating PBRs are analysed, and the need for future research is proposed. Finally, it is noted that microalgae farming on the ocean is a promising solution for human society to address the challenge of land space exhaustion due to the global population boom.

摘要

微藻具有巨大的潜力,可以替代陆地作物,高效生产大量生物质,用于食品、饲料、燃料和化学品生产,同时还可以处理废水和捕获碳。然而,这些技术要实现大宗商品的商业化,就必须大幅降低当前微藻生物质的生产成本。生物反应器是生物工艺工程的核心,也是某些类型生物技术商业化应用的前提。光养培养的挑战与异养过程完全不同,因为光养培养的效率受到输入太阳光的能量密度和无机碳供应的限制。因此,开发具有低制造成本和运营成本的微藻培养技术是解决这一问题的关键,而浮式光生物反应器(PBR)是一种很有前途的解决方案。PBR 部署在水面上,不需要任何土地,波浪能提供免费的混合能源。此外,周围的水可以用来控制培养温度,并为微藻生长提供养分。在这篇小型综述中,介绍了浮式 PBR 的发展及其最新进展。还批判性地讨论了碳供应方法对浮式 PBR 混合和放大的影响。分析了浮式 PBR 商业化应用的局限性和挑战,并提出了未来研究的必要性。最后,需要注意的是,海洋微藻养殖是人类社会解决由于全球人口爆炸导致陆地空间耗尽的挑战的一个很有前途的解决方案。

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