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Bio-refinery approaches based concomitant microalgal biofuel production and wastewater treatment

机译:基于生物炼油厂的方法伴随微藻生物燃料生产和废水处理

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摘要

Adopting the biorefinery approaches on the coupled process of phycoremediation and biofuel production using freshwater microalgae. A green microalga, Scenedesmus sp., cultivated in various concentrations of domestic wastewater (0,20,40,60,80,100%v/v). Maximum biomass productivity was obtained 62 mg/L/day cultivated in 100%v/v wastewater. During the stationary phase, the biomass was harvested adopting the flocculation technique. Interestingly, Scenedesmus sp., preferentially utilized 71.2% nitrate, 89.6% phosphorus, 23.5% calcium, 2% magnesium, 97.7% sulphate, 30% ammonia, 10.9% chloride, and 15.2% alkalinity in the wastewater which contribute to the wastewater treatment. Lipid productivity was found to be 19 mg/L/day. The fatty acid profile of transesterified lipids was characterized by adopting FT-1R, GC-MS, and ~1H NMR. The extracted biomass was utilized for the feedstock for bioethanol production. The amount of reducing sugar was found to be 11.2% (w/v). Acid hydrolyzed reducing sugars subjected to fermentation using Saccharomyces cerevisiae NCIM3288. Bioethanol was found to be 10.4 g/L after distillation.
机译:采用淡水微藻植物化和生物燃料生产耦合过程的生物遗产方法。绿色微藻,Scenedesmus sp。,以各种浓度的国内废水栽培(0,20,40,60,80,100%v / v)。获得100%v / v废水中培养的最大生物质生产率62mg / L /天。在固定阶段期间,采用絮凝技术收获生物质。有趣的是,Scenedesmus sp。,优先利用71.2%的硝酸盐,89.6%的磷,23.5%钙,2%硫酸镁,97.7%硫酸盐,30%氨,10.9%的氯化物和15.2%碱度在废水中有助于废水处理。发现脂质生产率为19 mg / l /天。通过采用FT-1R,GC-MS和〜1H NMR,表征酯化的脂质的脂肪酸谱。用萃取的生物质用于生物乙醇生产的原料。发现还原糖的量为11.2%(w / v)。使用Saccharomyces Cerevisiae NCIM3288进行发酵的酸水解还原糖。蒸馏后发现生物乙醇是10.4克/升。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|147267.1-147267.9|共9页
  • 作者单位

    Centre for Research Department of Biotechnology Kamaraj College of Engineering and Technology K. Vellakualm 625701 Madurai Tamil Nadu India;

    Centre for Research Department of Biotechnology Kamaraj College of Engineering and Technology K. Vellakualm 625701 Madurai Tamil Nadu India;

    Centre for Research Department of Biotechnology Kamaraj College of Engineering and Technology K. Vellakualm 625701 Madurai Tamil Nadu India;

    School of Life Sciences B.S. Abdur Rahman Crescent Institute of Science and Technology Seethakathi Estate Vandalur 60048 Chennai Tamil Nadu India;

    Centre for Research Department of Biotechnology Kamaraj College of Engineering and Technology K. Vellakualm 625701 Madurai Tamil Nadu India;

    Centre for Research Department of Biotechnology Kamaraj College of Engineering and Technology K. Vellakualm 625701 Madurai Tamil Nadu India;

    National Repository for Microalgae and Cyanobacteria - Freshwater Department of Microbiology Bharathidasan University Tiruchirappalli 620024 Tamil Nadu India;

    Centre for Research Department of Biotechnology Kamaraj College of Engineering and Technology K. Vellakualm 625701 Madurai Tamil Nadu India;

    Department of Molecular Microbiology Madurai Kamaraj University Palkalai Nagar 625021 Madurai Tamil Nadu India;

    Centre for Research Department of Biotechnology Kamaraj College of Engineering and Technology K. Vellakualm 625701 Madurai Tamil Nadu India;

    School of Renewable Energy Maejo University Chiang Mai 50290 Thailand College of Medical and Health Science Asia University Taichung Taiwan;

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

    Microalgae; Biorefinery; Biodiesel; Bioethanol; Remediation;

    机译:微藻;生物术;生物柴油;生物乙醇;修复;

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