Abst'/> Binary culture of microalgae as an integrated approach for enhanced biomass and metabolites productivity, wastewater treatment, and bioflocculation
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Binary culture of microalgae as an integrated approach for enhanced biomass and metabolites productivity, wastewater treatment, and bioflocculation

机译:微藻的二元培养作为提高生物量和代谢产物生产力,废水处理和生物絮凝的综合方法

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摘要

AbstractEcological studies of microalgae have revealed their potential to co-exist in the natural environment. It provides an evidence of the symbiotic relationship of microalgae with other microorganisms. The symbiosis potential of microalgae is inherited with distinct advantages, providing a venue for their scale-up applications. The deployment of large-scale microalgae applications is limited due to the technical challenges such as slow growth rate, low metabolites yield, and high risk of biomass contamination by unwanted bacteria. However, these challenges can be overcome by exploring symbiotic potential of microalgae. In a symbiotic system, photosynthetic microalgae co-exist with bacteria, fungi, as well as heterotrophic microalgae. In this consortium, they can exchange nutrients and metabolites, transfer gene, and interact with each other through complex metabolic mechanism. Microalgae in this system, termed as a binary culture, are reported to exhibit high growth rate, enhanced bio-flocculation, and biochemical productivity without experiencing contamination. Binary culture also offers interesting applications in other biotechnological processes including bioremediation, wastewater treatment, and production of high-value metabolites. The focus of the study is to provide a perspective to enhance the understanding about microalgae binary culture. In this review, the mechanism of binary culture, its potential, and limitations are briefly discussed. A number of queries are evolved through this study, which needs to be answered by executing future research to assess the real potential of binary culture.HighlightsDistinct features of binary culture over uni-algal system are discussed.The mechanism of microalgae symbiosis is described.A concept of binary culture based flocculation is presented.The uses of binary culture for wastewater/bio-refinery applications are identified.Future research directions are defined to promote binary culture.
机译: 摘要 对微藻类的生态研究表明,它们在自然环境中可以共存。它提供了微藻与其他微生物共生关系的证据。微藻的共生潜力具有独特的优势,为它们的放大应用提供了场所。由于技术挑战,例如生长速度慢,代谢产物产量低以及有害细菌污染生物质的风险高,因此限制了大规模微藻应用的部署。但是,这些挑战可以通过探索微藻的共生潜力来克服。在共生系统中,光合微藻与细菌,真菌以及异养微藻共存。在这个财团中,它们可以交换营养和代谢物,转移基因,并通过复杂的代谢机制相互影响。据报道,该系统中的微藻称为二元培养,显示出高生长速率,增强的生物絮凝性和生化生产率,而没有受到污染。二元培养还可以在其他生物技术过程中提供有趣的应用,包括生物修复,废水处理和高价值代谢产物的生产。研究的重点是提供一个视角,以增进对微藻二元培养的了解。在这篇综述中,简要讨论了二元文化的机制,其潜力和局限性。这项研究不断演变出许多疑问,需要通过进行未来的研究来评估二元文化的真正潜力来回答。 突出显示 讨论了单藻系统中二元文化的不同特征。 描述了微藻共生的机制。 基于二元文化的絮凝的概念 确定了二元培养在废水/生物精炼应用中的用途。 定义了未来的研究方向以促进二元文化。 < / ce:list>

著录项

  • 来源
    《Chemosphere》 |2018年第3期|67-75|共9页
  • 作者单位

    School of Sustainable Engineering and the Built Environment, Arizona State University,Department of Chemical Engineering, COMSATS Institute of Information Technology,Advanced Biomass R&D Center;

    School of Sustainable Engineering and the Built Environment, Arizona State University;

    School of Sustainable Engineering and the Built Environment, Arizona State University,Civil and Environmental Engineering Department, Lamar University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Binary culture; Microalgae symbiosis; Bio-flocculation; Wastewater treatment;

    机译:二进制培养;微藻共生;生物絮凝;废水处理;

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