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Comparison of heterotrophic and autotrophic denitrification processes for nitrate removal from phosphorus-limited surface water

机译:异养和自养反硝化工艺从限磷地表水中去除硝酸盐的比较

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摘要

Phosphorus (P) limitation has been demonstrated for micro-polluted surface water denitrification treatment in previous study. In this paper, a lab-scale comparative study of autotrophic denitrification (ADN) and heterotrophic denitrification (HDN) in phosphorus-limited surface water was investigated, aiming to find out the optimal nitrogen/phosphorus (N/P) ratio and the mechanism of the effect of P limitation on ADN and HDN. Furthermore, the optimal denitrification process was applied to the West Lake denitrification project, aiming to improve the water quality of the West Lake from worse than grade V to grade IV (GB3838-2006). The lab-scale study showed that the lack of P indeed inhibited HDN more greatly than ADN. The optimal N/P ratio for ADN and HDN was 25 and a 0.15 mg PO43--P L-1 of microbial available phosphorus (MAP) was observed. P additions could greatly enhance the resistance of ADN and HDN to hydraulic loading shock. Besides, The P addition could effectively stimulate the HDN performance via enriching the heterotrophic denitrifiers and the denitrifying phosphate-accumulating organisms (DNPAOs). Additionally, HDN was more effective and cost-effective than ADN for treating P-limited surface water. The study of the full-scale HDBF (heterotrophic denitrification biofilter) indicated that the denitrification performance was periodically impacted by P limitation, particularly at low water temperatures. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在先前的研究中,已经证明了磷(P)限制用于微污染的地表水反硝化处理。本文研究了限磷地表水中自养反硝化(ADN)和异养反硝化(HDN)的实验室规模对比研究,旨在找出最佳氮/磷(N / P)比例及其机理。 P限制对ADN和HDN的影响。此外,最佳的反硝化工艺已应用于西湖反硝化项目,旨在将西湖的水质从劣等的V级提高到IV级(GB3838-2006)。实验室规模的研究表明,缺乏磷确实比ADN对HDN的抑制作用更大。 ADN和HDN的最佳N / P比为25,并且观察到0.15 mg PO43--PL-1的微生物有效磷(MAP)。磷的添加可以大大增强ADN和HDN抵抗液压载荷冲击的能力。此外,磷的添加可以通过丰富异养反硝化剂和反硝化磷酸盐积累生物(DNPAOs)来有效地刺激HDN性能。此外,HDN在处理P受限地表水方面比ADN更有效且更具成本效益。对全尺寸HDBF(异养反硝化生物滤池)的研究表明,P限制会定期影响反硝化性能,特别是在低水温下。 (C)2018 Elsevier Ltd.保留所有权利。

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