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运行策略对光电强化生物除磷系统性能的影响。

The impact of operational strategies on the performance of a photo-EBPR system.

机构信息

UCIBIO-REQUIMTE, Department of Chemistry, Faculty of Sciences and Technology, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.

UCIBIO-REQUIMTE, Department of Chemistry, Faculty of Sciences and Technology, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.

出版信息

Water Res. 2018 Feb 1;129:190-198. doi: 10.1016/j.watres.2017.11.010. Epub 2017 Nov 4.

Abstract

A novel Phototrophic - Enhanced Biological Phosphorus Removal (Photo-EBPR) system, consisting of a consortium of photosynthetic organisms and polyphosphate accumulating organisms (PAOs), was studied in this work. A sequencing batch reactor was fed with a mixture of acetate and propionate (75%-25%) and subjected to dark/light cycles in order to select a photo-EBPR system containing PAOs and photosynthetic organisms, the latter likely providers of oxygen to the system. The results from the selection period (stage 1) showed that the photo-EBPR culture was capable of performing P release in the dark and P uptake in the presence of light, under limited oxygen concentrations. During the optimization period, the aeration period, which was initially provided at the end of the light phase, was gradually reduced until a non-aerated system was achieved, while the light intensity was increased. After optimization of the operational conditions, the selected consortium of photosynthetic organisms/PAOs showed high capacity of P removal in the light phase in the absence of air or other electron acceptor. A net P removal of 34 ± 3 mg-P/L was achieved, with a volumetric P removal rate of 15 ± 2 mg-P/L.h, and 79 ± 8% of P removal from the system. Also, in limiting oxygen conditions, the P uptake rate was independent of the PHA consumption, which demonstrates that the organisms obtained energy for P removal from light. These results indicated that a photo-EBPR system can be a potential solution for P removal with low COD/P ratios and in the absence of air, prospecting the use of natural sunlight as illumination, which would reduce the costs of EBPR operation regarding aeration.

摘要

本研究构建了一种新型的好氧/缺氧交替光照生物除磷(Photo-EBPR)系统,该系统由光合微生物和聚磷菌(PAOs)组成。采用序批式反应器,以乙酸盐和丙酸盐(75%-25%)的混合物作为进水基质,通过光照/黑暗周期的运行方式,筛选出具有聚磷功能的光合微生物和 PAOs。结果表明,在低氧浓度条件下,Photo-EBPR 系统能够在黑暗中释放磷,在光照下吸收磷。在优化阶段,逐渐减少曝气时间,同时增加光照强度,最终实现了非曝气的 Photo-EBPR 系统。优化后,在没有空气或其他电子受体的情况下,该光合微生物/PAOs 复合菌群在光照阶段仍具有较高的除磷能力。在该系统中,实现了 34 ± 3 mg-P/L 的磷去除量,磷去除速率为 15 ± 2 mg-P/L·h,磷去除率为 79 ± 8%。此外,在低氧条件下,磷的吸收速率与 PHB 的消耗无关,这表明微生物可以从光照中获取除磷所需的能量。这些结果表明,Photo-EBPR 系统可以解决低 COD/P 比条件下除磷和无需曝气的问题,有望利用自然光作为照明,从而降低 EBPR 工艺的曝气成本。

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