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A novel micro-ferrous dosing strategy for enhancing biological phosphorus removal from municipal wastewater

机译:一种新的微量亚铁计量添加策略,可增强市政污水中生物除磷的能力

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摘要

Ferrous salts have been widely used to enhance phosphorus removal in full-scale wastewater treatment plants, with an average dosage of 0.24-0.35 mM. However, such high dosage inevitably caused serious concerns on operation, potential biological toxicity and excessive sludge production. Thus, this study investigated the effect of micro-dosing of ferrous salt at the level of 0.02 mM on enhanced biological phosphorus removal (EBPR) in sequencing batch reactors. Results showed that micro-dosing of ferrous salt enhanced the overall performance, with average COD, TN and TP removal of more than 4.2%, 2.0% and 5.8%, respectively. In addition, the sequencing analysis further revealed that micro-ferrous dosing could significantly improve the diversity and richness of the microbial community (p < 0.05), whereas the regular dosing of ferrous salts (0.25 mM) negatively impacted on the EBPR performance. It was found that the abundances of phosphorus accumulating organisms (PAOs) in R2 (micro-dosing) were nearly 1.5-fold and 2-fold higher than those in R1 (control) and R3 (regular dosing). The contributions of biological and chemical pathways towards the observed phosphorus removal were also determined according to the phosphorus releasing rate. For micro-dosage and regular dosage of ferrous salts, phosphorus removal mainly relied on biological phosphorus removal and chemical phosphorus removal, respectively. It appears from this this study that the micro-ferrous dosing strategy is practically feasible and economically viable for enhanced phosphorus removal from municipal wastewater.
机译:亚铁盐已被广泛用于增强大型废水处理厂的除磷效果,平均剂量为0.24-0.35 mM。然而,如此高的剂量不可避免地引起对操作,潜在的生物毒性和过量污泥产生的严重关注。因此,本研究调查了在分批批处理反应器中微量添加亚铁盐0.02 mM对增强生物除磷(EBPR)的影响。结果表明,微量投加亚铁盐可提高整体性能,平均COD,TN和TP去除率分别超过4.2%,2.0%和5.8%。此外,测序分析还表明,微量亚铁剂量可显着改善微生物群落的多样性和丰富性(p <0.05),而常规亚铁盐(0.25 mM)剂量对EBPR性能产生负面影响。已发现,R2(微量添加)中的磷累积生物(PAOs)的丰度比R1(对照)和R3(常规添加)高近1.5倍和2倍。还根据磷释放速率确定了生物学和化学途径对观察到的磷去除的贡献。对于微量亚铁盐和常规剂量的亚铁盐,除磷主要依赖于生物除磷和化学除磷。从这项研究看来,微量亚铁计量策略对于提高市政废水中的磷去除率实际上是可行的,并且在经济上是可行的。

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  • 来源
    《The Science of the Total Environment》 |2020年第20期|135453.1-135453.7|共7页
  • 作者单位

    Department of Water and Wastewater Engineering Wuhan University of Science and Technology Wuhan 430065 China Advanced Environmental Biotechnology Centre Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 637141 Singapore;

    Department of Water and Wastewater Engineering Wuhan University of Science and Technology Wuhan 430065 China;

    Advanced Environmental Biotechnology Centre Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 637141 Singapore Interdisciplinary Graduate School Nanyang Technological University 50 Nanyang Avenue 639798 Singapore;

    Advanced Environmental Biotechnology Centre Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 637141 Singapore;

    Advanced Environmental Biotechnology Centre Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 637141 Singapore School of Civil and Environmental Engineering Nanyang Technological University 50 Nanyang Avenue Singapore 639798 Singapore;

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

    Enhanced biological phosphorus removal; Chemical phosphorus removal; Ferrous salt; Micro-dosing; Phosphate accumulating organisms; Phosphorus releasing rate;

    机译:增强生物除磷;化学除磷;亚铁盐微剂量磷酸盐积累生物;磷释放速率;

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