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首页> 外文期刊>The Science of the Total Environment >Comparative life cycle assessment of microalgae cultivation for non-energy purposes using different carbon dioxide sources
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Comparative life cycle assessment of microalgae cultivation for non-energy purposes using different carbon dioxide sources

机译:使用不同二氧化碳来源的非能量目的微凝血培养的比较生命周期评估

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摘要

The ability of microalgae to sequester carbon and at the same time synthesise valuable compounds with potential applications in nutraceutical, pharmaceutical and cosmetic industries makes them attractive for commercial deployment, especially in view of a blue bioeconomy. Among microalgae, the diatom Phaeodactylum tricornutum is considered as an important potential source of omega-3 polyunsaturated fatty acids, such as eicosapentanoic acid, an essential polyunsaturated fatty acid with anti-inflammatory and antimicrobial properties. The aim of this study was to perform the Life Cycle Assessment of the cultivation of P. tricornutum - at semi-industrial scale in photobioreactor - for the production of high-quality bioactive compounds comparing synthetic carbon dioxide supply to a supply with waste carbon dioxide from a biogas upgrading process hypothesizing industrial symbiosis network. The effect of renewable energy use instead of the European electricity mix was also examined. Primary data on the production process, including the stages of cleaning and sterilisation, cultivation, harvesting and freeze-drying, were used. The midpoint impact categories recommended in the ILCD Handbook were used for performing the impact assessment. A sensitivity analysis was also performed on algal productivity, culture medium recircula-tion factor and amount of solvents per cleaning cycle. Firstly, results indicate in general cultivation and freeze-drying as the most contributing stages to the impacts. Secondly, they demonstrate in the comparative assessment that the use of carbon dioxide from the biogas upgrading is a feasible and attractive alternative to the synthetic one, as it allows for the improvement of the environmental performance of the production process in all the analysed impact categories. Finally, sensitivity analysis suggests that the environmental performance could be further improved by acting on other key factors, such as electricity source, nutrients culture medium and cleaning solutions.
机译:微藻螯合碳的能力,同时合成含有营养保健,制药和化妆品行业的潜在应用的有价值的化合物,使它们对商业部署具有吸引力,特别是鉴于蓝色生物经济。在微藻中,硅藻肽三乳蛋白utum被认为是ω-3多不饱和脂肪酸的重要潜在来源,例如eicosapentanoiden,一种具有抗炎和抗微生物性质的必需的多不饱和脂肪酸。本研究的目的是在光生物反应器中对P. Tricornutum的培养进行生命周期评估 - 用于生产高质量的生物活性化合物,从而将合成二氧化碳供应与废二氧化碳的供应相比沼气升级过程假设工业共生网络。还检查了可再生能源使用而不是欧洲电力组合的影响。使用生产过程的主要数据,包括包括清洁和灭菌,培养,收获和冷冻干燥的阶段。 ILCD手册中推荐的中点冲击类别用于执行影响评估。还对藻类生产率,培养基循环循环因子和每种清洁循环溶剂量进行敏感性分析。首先,结果在一般栽培和冷冻干燥中表明了对影响最大的阶段。其次,他们在比较评估中证明了从沼气升级的二氧化碳使用二氧化碳是合成的一种可行且有吸引力的替代品,因为它允许在所有分析的影响类别中改善生产过程的环境性能。最后,敏感性分析表明,通过在其他关键因素(如电力源培养基和清洁溶液)上行动,可以进一步改善环境性能。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第15期|137714.1-137714.12|共12页
  • 作者单位

    Department of Physics and Astronomy University of Bologna Viale Berti Pichat 6/2 40127 Bologna Italy;

    Department of Physics and Astronomy University of Bologna Viale Berti Pichat 6/2 40127 Bologna Italy;

    Department of Biological Geological and Environmental Sciences University of Bologna via Sant'Alberto 163 48123 Ravenna Italy Interdepartmental Centre for Industrial Research in Renewable Resources Environment Sea and Energy University of Bologna via Sant'Alberto 163 48123 Ravenna Italy;

    Department of Physics and Astronomy University of Bologna Viale Berti Pichat 6/2 40127 Bologna Italy Interdepartmental Centre for Industrial Research in Renewable Resources Environment Sea and Energy University of Bologna via Sant'Alberto 163 48123 Ravenna Italy;

    Interdepartmental Centre for Industrial Research in Renewable Resources Environment Sea and Energy University of Bologna via Sant'Alberto 163 48123 Ravenna Italy;

    Department of Physics and Astronomy University of Bologna Viale Berti Pichat 6/2 40127 Bologna Italy Interdepartmental Centre for Industrial Research in Renewable Resources Environment Sea and Energy University of Bologna via Sant'Alberto 163 48123 Ravenna Italy;

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

    Environmental assessment; Marine microalgae; Bioactive compounds; High-value products; CO_2 fixation; Waste CO_2;

    机译:环境评估;海洋微藻;生物活性化合物;高价值产品;co_2固定;废弃物CO_2.;

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