首页 正文

Journal of environmental sciences (China). 2021 Nov:109:1-14. doi: 10.1016/j.jes.2021.02.026 Q16.32025

Enhancement of simultaneous nitrogen and phosphorus removal using intermittent aeration mechanism

间歇曝气对同步除磷脱氮效果的强化研究 翻译改进

Parnian Izadi  1, Parin Izadi  1, Ahmed Eldyasti  2

作者单位 +展开

作者单位

  • 1 Civil engineering, York university, 4700 Keele St, Toronto, ON, Canada.
  • 2 Civil engineering, York university, 4700 Keele St, Toronto, ON, Canada. Electronic address: ahmed.eldyasti@lassonde.yorku.ca.
  • DOI: 10.1016/j.jes.2021.02.026 PMID: 34607658

    摘要 Ai翻译

    Biological nutrient removal grows into complicated scenario due to the microbial consortium shift and kinetic competition between phosphorus (P)-accumulating and nitrogen (N)-removing microorganisms. In this study, three sequential batch reactors with constant operational conditions except aeration patterns at 6 h cycle periods were tested. Intermittent aeration was applied to develop a robust nutrient removal system aimed to achieve high energy saving and removal efficiency. The results showed higher correspondence of P-uptake, polymeric substance synthesis and glycogen degradation in intermittent-aeration with longer interval periods compared to continuous-aeration. Increasing the intermittent-aeration duration from 25 to 50 min, resulted in higher process performance where the system exhibited approximately 30% higher nutrient removal. This study indicated that nutrient removal strongly depends on reaction phase configuration representing the importance of aeration pattern. The microbial community examined the variation in abundance of bacterial groups in suspended sludge, where the 50 min intermittent aeration, favored the growth of P-accumulating organisms and nitrogen removal microbial groups, indicating the complications related to nutrient removal systems. Successful intermittently aerated process with high capability of simple implementation to conventional systems by elemental retrofitting, is applicable for upgrading wastewater treatment plants. With aeration as a major operational cost, this process is a promising approach to potentially remove nutrients in high competence, in distinction to optimizing cost-efficacy of the system.

    Keywords: Dissolved oxygen; EBPR; Intermittent aeration; Nutrient removal; PAO; Polyhydroxyalkanoate.

    Keywords:nitrogen removal; phosphorus removal

    Copyright © Journal of environmental sciences (China). 中文内容为AI机器翻译,仅供参考!

    相关内容

    期刊名:Journal of environmental sciences

    缩写:J ENVIRON SCI

    ISSN:1001-0742

    e-ISSN:1878-7320

    IF/分区:6.3/Q1

    文章目录 更多期刊信息

    全文链接
    引文链接
    复制
    已复制!
    推荐内容
    Enhancement of simultaneous nitrogen and phosphorus removal using intermittent aeration mechanism