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Growing wastewater-born microalga Auxenochlorella protothecoides UMN280 on concentrated municipal wastewater for simultaneous nutrient removal and energy feedstock production

机译:在浓缩的城市废水上生长废水中产生的微藻原藻Auxenochlorella protothecoides UMN280,以同时去除营养和生产能源原料

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摘要

Using wastewater to grow algae is probably the most promising route to reduce production costs associated with nutrients and water. In this study, a newly isolated facultative heterotrophic freshwater microalgae strain, Auxenochlorella protothecoides UMN280, was examined for algal growth, wastewater nutrient removal efficiency, and lipid accumulation in batch and semi-continuous cultivation with various hydraulic retention time using concentrated municipal wastewater (CMW) as cultivation media. The results of the 6 day batch cultivation showed that the maximal removal efficiencies for total nitrogen, total phosphorus, chemical oxygen demand (COD) and total organic carbon (TOC) were over 59%, 81%, 88% and 96%, respectively, with high growth rate (0.490 d~(-1)), high biomass productivity (269 mg L~(-1) d~(-1)) and high lipid productivity (78 mg L~(-1) d~(-1)). Further fatty acid methyl ester (FAME) analysis showed that the microalgal lipids were mainly composed of C16/C18 fatty acids (accounting for over 94% of total fatty acid), which are suitable for high-quality biodiesel production. The system could be scaled up from 100 mL flasks to 25 L BIOCOIL reactors, and semi-continuously operated at hydraulic retention time of 3 days with a net biomass productivity of 1.51 g L~(-1)d~(-1) of dried algae.
机译:使用废水种植藻类可能是减少与养分和水有关的生产成本的最有前途的途径。在这项研究中,检查了新分离的兼性异养淡水微藻菌株Auxenochlorella protothecoides UMN280在使用浓缩市政废水(CMW)进行不同水力停留时间的分批和半连续培养中的藻生长,废水养分去除效率和脂质积累。作为栽培媒介。 6天分批培养的结果表明,总氮,总磷,化学需氧量(COD)和总有机碳(TOC)的最大去除率分别超过59%,81%,88%和96%,具有高生长速率(0.490 d〜(-1)),高生物量生产率(269 mg L〜(-1)d〜(-1))和高脂质生产率(78 mg L〜(-1)d〜(- 1))。进一步的脂肪酸甲酯(FAME)分析表明,微藻脂质主要由C16 / C18脂肪酸组成(占总脂肪酸的94%以上),适合于高质量生物柴油的生产。该系统可以从100 mL烧瓶扩大到25 L BIOCOIL反应器,并在3天的水力停留时间半连续运行,干燥后的净生物量为1.51 g L〜(-1)d〜(-1)藻类。

著录项

  • 来源
    《Applied Energy》 |2012年第2012期|p.433-440|共8页
  • 作者单位

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

    Center for Biorefining, Biopwducts and Biosystems Engineering Department, University of Minnesota. 1390 Eckles Ave., Saint Paul. MN 55108, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    auxenochlorella protothecoides umn280; biofuel feedstock production; municipal wastewater; nutrient removal; semi-continuous cultivation;

    机译:原藻小球藻umn280;生物燃料原料生产;城市废水;营养去除半连续栽培;
  • 入库时间 2022-08-18 00:09:47

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