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首页> 外文期刊>The Science of the Total Environment >Cultivating microalgae in wastewater for biomass production, pollutant removal, and atmospheric carbon mitigation; a review
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Cultivating microalgae in wastewater for biomass production, pollutant removal, and atmospheric carbon mitigation; a review

机译:培养生物质生产废水中的微藻,污染物去除和大气碳缓解;回顾

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摘要

Water shortage is one of the leading global problems along with the depletion of energy resources and environmental deterioration. Recent industrialization, global mobility, and increasing population have adversely affected the freshwater resources. The wastewater sources are categorized as domestic, agricultural and industrial effluents and their disposal into water bodies poses a harmful impact on human and animal health due to the presence of higher amounts of nitrogen, phosphorus, sulfur, heavy metals and other organic/inorganic pollutants. Several conventional treatment methods have been employed, but none of those can be termed as a universal method due to their high cost, less efficiency, and non-environment friendly nature. Alternatively, wastewater treatment using microalgae (phycoremediation) offers several advantages over chemical-based treatment methods. Microalgae cultivation using wastewater offers the highest atmospheric carbon fixation rate (1.83 kg CO_2/kg of biomass) and fastest biomass productivity (40-50% higher than terrestrial crops) among all terrestrial bio-remediators with concomitant pollutant removal (80-100%). Moreover, the algal biomass may contain high-value metabolites including omega-3-fatty acids, pigments, amino acids, and high sugar content. Hence, after extraction of high-value compounds, residual biomass can be either directly converted to energy through thermo-chemical transformation or can be used to produce biofuels through biological fermentation or transes-terification. This review highlights the recent advances in microalgal biotechnology to establish a biorefinery approach to treat wastewater. The articulation of wastewater treatment facilities with microalgal biorefinery, the use of microalgal consortia, the possible merits, and demerits of phycoreme-diation are also discussed. The impact of wastewater-derived nutrient stress and its exploitation to modify the algal metabolite content in view of future concerns of cost-benefit ratios of algal biorefineries is also highlighted.
机译:缺水是领先的全球问题之一,随着能源资源和环境恶化的消耗。最近的工业化,全球流动性和增加人口对淡水资源产生了不利影响。废水来源被归类为国内,农业和工业污水,由于存在较高量的氮,磷,硫,重金属和其他有机/无机污染物,因此对水体的处理对人体和动物健康产生有害影响。已经采用了几种常规治疗方法,但由于其高成本,效率较低和非环境友好性质,因此这些方法都没有被称为普遍的方法。或者,使用微藻(植物修复)的废水处理提供了优于基于化学的处理方法的若干优点。使用废水的微藻培养具有最高的大气碳固定速率(1.83千克CO_2 / kg生物量),并在所有陆地生物补救群中的最快生物量生产率(比陆地作物高40-50%),伴随着污染物(80-100%) 。此外,藻类生物质可含有高值代谢物,包括ω-3-脂肪酸,颜料,氨基酸和高糖含量。因此,在提取高价值化合物之后,残留的生物质可以通过热化学转化直接转化为能量,或者可用于通过生物发酵或转换制作生物燃料。本综述凸显了微藻生物技术最近的进展,建立了治疗废水的生物遗工方法。还讨论了微藻生物术,使用微藻混合,可能的优点和植物分泌的可能性和缺点的污水处理设施的关节。还强调了废水营养胁迫营养应激及其利用改变藻类代谢物含量的影响,以考虑到未来的藻类生物杂种的成本效益比率的担忧。

著录项

  • 来源
    《The Science of the Total Environment 》 |2020年第20期| 135303.1-135303.17| 共17页
  • 作者单位

    Bioenergy Research Centre Department of Bioinformatics & Biotechnology Government College University Faisalabad Faisalabad 38000 Pakistan;

    Bioenergy Research Centre Department of Bioinformatics & Biotechnology Government College University Faisalabad Faisalabad 38000 Pakistan;

    School of Bioengineering Sichuan University of Science and Engineering Zigong 643000 People's Republic of China;

    College of Bioscience and Engineering North Minzu University Yinchuan 750021 Ningxia China;

    State Key Laboratory of Marine Environmental Science Institute of Marine Microbes and Ecospheres College of Ocean and Earth Sciences Xiamen University Xiamen China Department of Computer Science The University of Agriculture Faisalabad Faisalabad 38000 Pakistan;

    Department of Chemistry The University of Agriculture Faisalabad Faisalabad 38000 Pakistan;

    School of Chemical Engineering Zhengzhou University Zhengzhou 450001 China;

    School of Bioengineering Sichuan University of Science and Engineering Zigong 643000 People's Republic of China Bioenergy Research Centre Department of Bioinformatics & Biotechnology Government College University Faisalabad Faisalabad 38000 Pakistan;

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

    Microalgae cultivation; Wastewater treatment; Biorefineries; CO_2 fixation; Cost-effective;

    机译:微藻栽培;废水处理;生物归档;co_2固定;成本效益;

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