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首页> 外文期刊>Environmental progress >Impact of Density Loads on Performance of Duckweed Bioreactor: A Potential System for Synchronized Wastewater Treatment and Energy Biomass Production
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Impact of Density Loads on Performance of Duckweed Bioreactor: A Potential System for Synchronized Wastewater Treatment and Energy Biomass Production

机译:密度负荷对浮萍生物反应器性能的影响:废水同步处理和能源生物质生产的潜在系统

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摘要

Duckweed Lemna gibba has been listed as a promising plant for wastewater treatment and energy biomass production. This study aims to study the efficacy of L. gibba based bioreactor in removal of wastewater pollutants loads and energy-rich biomass harvesting under different plant biomass density loads. A total of four density loads: 20% (T1), 40% (T2), 60% (T3), and 80% (T4) of inoculants biomass were used to construct duckweed reactors and changes in waste-water (WW) and duckweed biomass characteristics (growth rate, biochemical composition etc.) were recorded for 21 days. The nutrient load in WW reduced significantly: NO3-N (83-89%), SO_4~(2-) 30 (85-86%) and total phosphorus (TP) (67-72%) at the end in all experimental set-ups. The reactor with 20% inoculation density showed the maximum WW nutrient removal. The weed biomass yield showed the direct relationship with inoculation density in all experimental set-ups. The yield (dry weight basis) of carbohydrate, starch and protein was: 1.39-1.77 g m~(-2) day~(-1), 1.10-1.20 g m~(-2) day~(-1), and 1.9-2.24 g m~(-2) day~(-1), respectively in different set-ups. The high yield of starch under optimized density load suggests the utility of harvested biomass for bioethanol production. Results thus, suggested that inoculation density directly plays an important role in performance of duckweed reactors in terms of WW treatment and energy biomass synthesis.
机译:Duckweed Lemna gibba已被列为废水处理和能源生物质生产的有前途的工厂。本研究旨在研究基于L. gibba的生物反应器在不同植物生物量密度负荷下去除废水污染物负荷和收集能量丰富的生物质的功效。总共使用了四个密度负荷:接种物生物量的20%(T1),40%(T2),60%(T3)和80%(T4)来建造浮萍反应堆以及废水(WW)和废水的变化。记录浮萍生物量特征(生长速率,生化组成等)21天。 WW中的养分负荷显着降低:所有实验组结束时NO3-N(83-89%),SO_4〜(2-)30(85-86%)和总磷(TP)(67-72%) -UPS。接种密度为20%的反应器显示出最大的WW营养去除率。在所有实验设置中,杂草的生物量产量均与接种密度直接相关。碳水化合物,淀粉和蛋白质的产量(以干重计)为:1.39-1.77 gm〜(-2)天〜(-1),1.10-1.20 gm〜(-2)天〜(-1)和1.9-在不同的设置下分别为2.24克〜(-2)天〜(-1)。在优化的密度负荷下,淀粉的高产率表明收获的生物质可用于生物乙醇生产。因此,结果表明,接种物密度直接影响浮萍反应堆的水处理和能量生物质合成。

著录项

  • 来源
    《Environmental progress 》 |2015年第6期| 1596-1604| 共9页
  • 作者

    Rashmi Verma; Surindra Suthar;

  • 作者单位

    School of Environment and Natural Resources, Doon University, Dehradun, Uttarakhand 248001, India;

    School of Environment and Natural Resources, Doon University, Dehradun, Uttarakhand 248001, India;

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

    duckweed; wastewater treatment; renewable energy; aquatic biomass;

    机译:浮萍;废水处理;再生能源;水生生物量;

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