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首页> 外文期刊>The Science of the Total Environment >Nighttime aeration mode enhanced the microalgae-bacteria symbiosis (ABS) system stability and pollutants removal efficiencies
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Nighttime aeration mode enhanced the microalgae-bacteria symbiosis (ABS) system stability and pollutants removal efficiencies

机译:夜间曝气模式增强了微藻 - 细菌共生(ABS)系统稳定性和污染物去除效率

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摘要

Utilizing external aeration to enhance the performance of microalgae-bacteria symbiosis (ABS) system has been extensively studied. However, inappropriate aeration damaged ABS system stability. A nighttime aeration mode (NA-ABS) in different aeration intensities (20,50,100 mL/min) was adopted to compare to continuous aeration microalgae-bacteria symbiosis (CA-ABS) mode and no-aerated mode on pollutants removal efficiencies and system stability. Results showed that NA-ABS system performed better on total organic carbon (TOC), NH|-N, total nitrogen (TN) and PO~(3-)_4 removal than CA-ABS system, especially under the aeration intensity of 20 mL/min (NA120), with the removal efficiencies of 96.59%, 99.18%, 90.30% and 89.16%, respectively. These results were because NA-ABS system prevented CO_2 stripping and provided more dissolved inorganic carbon (DIC) for the microalgae growth. Furthermore, less CO_2 stripping released the competition between microalgae and autotrophic bacteria for the DIC, leading to a more stable ABS system during long-term operation. This paper suggested that NA-ABS system would provide some new insights into ABS system and be helpful for further study.
机译:利用外部通气来增强微藻 - 细菌共生(ABS)系统的性能已经过广泛研究。然而,不适当的曝气损坏的ABS系统稳定性。采用不同曝气强度(20,50,100毫升/分钟)的夜间曝气模式(NA-ABS)与污染物去除效率和系统稳定性的连续曝气微藻 - 细菌共生(CA-ABS)模式和无空气方式进行比较。结果表明,NA-ABS系统在总有机碳(TOC),NH | -N,总氮(TN)和PO〜(3 - )_ 4上比于CA-ABS系统进行,特别是在曝气强度为20毫升/ min(Na120),分别去除效率为96.59%,99.18%,90.30%和89.16%。这些结果是因为Na-ABS系统防止了CO_2剥离并提供了更溶解的无机碳(DIC)用于微藻生长。此外,较少的CO_2剥离释放了DIC的微藻和自养细菌之间的竞争,导致在长期运行期间更稳定的ABS系统。本文建议NA-ABS系统将为ABS系统提供一些新的见解,并有助于进一步研究。

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  • 来源
    《The Science of the Total Environment》 |2020年第15期|140607.1-140607.9|共9页
  • 作者单位

    State Key Laboratory of Urban Water Resource and Environment (SKLUWRE) Harbin Institute of Technology. 73 Huanghe Road Nangang District Harbin 150090 PR China;

    School of Engineering Northeast Agricultural University 600 Changjiang Street Xiangfang District Harbin 150030 PR China;

    Department of Civil Engineering The University of British Columbia 6250 Applied Science Lane Vancouver BC VST 114 Canada;

    State Key Laboratory of Urban Water Resource and Environment (SKLUWRE) Harbin Institute of Technology. 73 Huanghe Road Nangang District Harbin 150090 PR China;

    State Key Laboratory of Urban Water Resource and Environment (SKLUWRE) Harbin Institute of Technology. 73 Huanghe Road Nangang District Harbin 150090 PR China;

    State Key Laboratory of Urban Water Resource and Environment (SKLUWRE) Harbin Institute of Technology. 73 Huanghe Road Nangang District Harbin 150090 PR China;

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

    Microalgae-bacteria symbiosis; Nighttime aeration; Inorganic carbon competition; CO_2 stripping;

    机译:微藻 - 细菌共生;夜间曝气;无机碳竞争;CO_2剥离;

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