首页> 外文期刊>Journal of Hazardous Materials >Novel sequential flow baffled microalgal-bacterial photobioreactor for enhancing nitrogen assimilation into microalgal biomass whilst bioremediating nutrient-rich wastewater simultaneously
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Novel sequential flow baffled microalgal-bacterial photobioreactor for enhancing nitrogen assimilation into microalgal biomass whilst bioremediating nutrient-rich wastewater simultaneously

机译:新型顺序流动膨胀的微藻 - 细菌光生物反应器,用于将氮同化增强到微藻生物量,同时同时生物保养营养丰富的废水

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摘要

A novel sequential flow baffled microalgal-bacterial (SFB-AlgalBac) photobioreactor was designed to cater for the synergistic interactions between microalgal and bacterial consortia to enhance nitrogen assimilation into microalgal biomass from nutrient-rich wastewater medium. The performance of the SFB-AlgalBac photo-bioreactor was found to be optimum at the influent flow rate of 5.0 L/d, equivalent to 20 days of hydraulic retention time (HRT). The highest microalgal nitrogen assimilation rate (0.0271 /d) and biomass productivity (1350 mg/d) were recorded amidst this flow rate. Further increase to the 10.0 L/d flow rate reduced the photobioreactor performance, as evidenced by a reduction in microalgal biomass productivity (10%). The microalgal biomass per unit of nitrogen assimilated values were attained at 16.69 mg/mg for the 5.0 L/d flow rate as opposed to 7.73 mg/mg for the 10.0 L/d flow rate, despite both having comparable specific growth rates. Also, the prior influent treatment by activated sludge was found to exude extracellular polymeric substances which significantly improved the microalgal biomass settleability up to 37%. The employment of SFB-AlgalBac photobioreactor is anticipated could exploit the low-cost nitrogen sources from nutrient-rich wastewaters via bioconversion into valuable microalgal biomass while fulfilling the requirements of sustainable wastewater treatment technologies.
机译:设计了一种新的顺序流动膨胀的微藻 - 细菌(SFB- algalbac)光生物反应器设计用于迎合微藻和细菌结合之间的协同相互作用,从而将氮气同化增强到来自富含营养的废水介质的微藻生物量。发现SFB-藻类光学生物反应器的性能是最佳的5.0L / D的流入流速,相当于20天的液压保留时间(HRT)。在该流速下,记录最高的微藻氮同化率(0.0271 / d)和生物质生产率(1350mg / d)。进一步增加到10.0L / d流速降低了光生物反应器性能,如微藻生物质生产率的降低所证明的(> 10%)。尽管具有相当的特异性生长速率,但为5.0L / D流速的5.0L / d流速,每单位氮同化值的微藻生物量为5.0L / d流速。此外,发现活性污泥的先前进水处理渗透细胞外聚合物物质,可显着改善微藻生物质沉积率高于37%。预期SFB-藻酰菌光学反应器的就业可以通过生物转化将低成本的氮源从营养的废水器中利用生物转化成有价值的微藻生物量,同时满足可持续废水处理技术的要求。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2021年第5期|124455.1-124455.9|共9页
  • 作者单位

    Univ Teknol PETRONAS Dept Fundamental & Appl Sci HICoE Ctr Biofuel & Biochem Res Inst Self Sustainable Bldg Seri Iskandar 32610 Perak Darul Rid Malaysia;

    Univ Teknol PETRONAS Dept Fundamental & Appl Sci HICoE Ctr Biofuel & Biochem Res Inst Self Sustainable Bldg Seri Iskandar 32610 Perak Darul Rid Malaysia;

    Univ Teknol PETRONAS Dept Chem Engn HICoE Ctr Biofuel & Biochem Res Inst Self Sustainable Bldg Seri Iskandar 32610 Perak Darul Rid Malaysia;

    Univ Tunku Abdul Rahman Fac Engn & Green Technol FEGT Dept Environm Engn Kampar 31900 Perak Darul Rid Malaysia;

    Univ Tunku Abdul Rahman Dept Petrochem Engn Fac Engn & Green Technol FEGT Kampar 31900 Perak Darul Rid Malaysia;

    Univ Sheffield Dept Mech Engn Sheffield S10 2TN S Yorkshire England;

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

    Microalgae; Activated sludge; Photobioreactor; Nitrification; Kinetic model;

    机译:微藻;活性污泥;光生物反应器;硝化;动力学模型;
  • 入库时间 2022-08-19 01:50:03
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