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首页> 外文期刊>Journal of Cleaner Production >Ozonation as non-thermal option for bacterial load reduction of Chlorella biomass cultivated in airlift photobioreactor
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Ozonation as non-thermal option for bacterial load reduction of Chlorella biomass cultivated in airlift photobioreactor

机译:空运光学生物反应器中培养的小球藻生物质的细菌负荷减少的非热选

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摘要

The present study proposes the selective reduction of bacterial load in the microalgal cultures without affecting the microalgae. Bacteria was found to be symbiotically associated with microalgae and exponentially increased in the range of 10(3)-10(11) CFU mL(-1) during Chlorella cultivation in the airlift photobioreactor. The bacterial load needs to be reduced to meet USFDA standards (similar to 10(3) CFU mL(-1)) for the use of microalgal biomass in food and feed applications. Ozone was evaluated as a non-thermal option for bacterial load reduction of Chlorella cultivated in the airlift photobioreactor. The results of ozonation w.r.t to time (5, 10, 15, 20, 25, and 30 min) and dissolved ozone concentrations (0.25, 0.49, 0.75, 0.99, and 1.25 mg of O-3 L-1) showed a significant reduction of bacterial load in the range of 3 - 6.5 log. The bacterial disinfection kinetics of ozonation showed an overall second-order reaction with a rate constant (K) of 0.93 mg(-1) min(-1) L. Further, confocal laser microscopy imaging of Chlorella and its associated bacterial cells confirmed the selective and significant reduction of associated bacteria. The viability of the Chlorella cells were confirmed with trypan blue viability assay (similar to 99%) under a fluorescent microscope. The biomass quality with respect to metabolite integrity was also validated. In conclusion, ozonation can be a potential solution for selective reduction of bacterial load associated with Chlorella without affecting Chlorella cells viability. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究提出了微藻培养物中的细菌载体的选择性降低而不影响微藻。发现细菌与微藻有符合符合酶联的,并且在空运光生物反应器中的小球藻培养过程中,在10(3)-10(11)CFU mL(-1)的范围内呈指数增加。需要减少细菌负荷以满足USFDA标准(类似于10(3)个CFU ML(-1))用于在食品和饲料应用中使用微藻生物量。臭氧被评价为在空运光生物反应器中培养的小球藻的细菌负荷减少的非热选。臭氧处理的结果(5,10,15,20,25和30分钟)和溶解的臭氧浓度(0.25,0.49,0.75,0.99和1.25mg O-3 L-1)显示出显着的减少细菌负载范围为3 - 6.5日志。臭氧的细菌消毒动力学显示出与0.93mg(-1)min(-1)m1的速率常数(k)的总二阶反应。此外,小球藻的共聚焦激光显微镜显像和其相关的细菌细胞证实了选择性相关细菌的显着减少。在荧光显微镜下用锥虫蓝活力测定(类似于99%)确认小球菌细胞的活力。还验证了相对于代谢物完整性的生物质质量。总之,臭氧化可以是用于选择性降低与小球藻相关的细菌载体的潜在解决方案,而不会影响小球藻的活力。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2020年第1期|123029.1-123029.11|共11页
  • 作者单位

    Acad Sci & Innovat Res AcSIR Ghaziabad 201002 India|Cent Food Technol Res Inst CSIR Plant Cell Biotechnol Dept Mysuru 570020 Karnataka India;

    Acad Sci & Innovat Res AcSIR Ghaziabad 201002 India|Cent Food Technol Res Inst CSIR Plant Cell Biotechnol Dept Mysuru 570020 Karnataka India;

    Acad Sci & Innovat Res AcSIR Ghaziabad 201002 India|Cent Food Technol Res Inst CSIR Plant Cell Biotechnol Dept Mysuru 570020 Karnataka India;

    Acad Sci & Innovat Res AcSIR Ghaziabad 201002 India|Cent Food Technol Res Inst CSIR Plant Cell Biotechnol Dept Mysuru 570020 Karnataka India;

    Acad Sci & Innovat Res AcSIR Ghaziabad 201002 India|Cent Food Technol Res Inst CSIR Plant Cell Biotechnol Dept Mysuru 570020 Karnataka India;

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

    Microalgae; Bacteria; Chlorella; Ozone; Photobioreactor;

    机译:微藻;细菌;小球藻;臭氧;PhotoBioreActor;

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