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用于处理厌氧膜生物反应器出水的户外平板膜光生物反应器。运行、设计和环境条件的影响。

Outdoor flat-panel membrane photobioreactor to treat the effluent of an anaerobic membrane bioreactor. Influence of operating, design, and environmental conditions.

作者信息

González-Camejo J, Barat R, Ruano M V, Seco A, Ferrer J

机构信息

CALAGUA - Unidad Mixta UV-UPV, Institut Universitari d'Investigació d'Enginyeria de l'Aigua i Medi Ambient - IIAMA, Universitat Politècnica de Valencia, Camí de Vera s/n, 46022 Valencia, Spain E-mail:

CALAGUA - Unidad Mixta UV-UPV, Departament d'Enginyeria Química, Universitat de València, Avinguda de la Universitat s/n, 46100 Burjassot, Valencia, Spain.

出版信息

Water Sci Technol. 2018 Aug;78(1-2):195-206. doi: 10.2166/wst.2018.259.

Abstract

As microalgae have the ability to simultaneously remove nutrients from wastewater streams while producing valuable biomass, microalgae-based wastewater treatment is a win-win strategy. Although recent advances have been made in this field in lab conditions, the transition to outdoor conditions on an industrial scale must be further investigated. In this work an outdoor pilot-scale membrane photobioreactor plant was operated for tertiary sewage treatment. The effects of different parameters on microalgae performance were studied including: temperature, light irradiance (solar and artificial irradiance), hydraulic retention time (HRT), biomass retention time (BRT), air sparging system and influent nutrient concentration. In addition the competition between microalgae and ammonium oxidising bacteria for ammonium was also evaluated. Maximum nitrogen and phosphorus removal rates of 12.5 ± 4.2 mgN·L·d and 1.5 ± 0.4 mgP·L·d, respectively, were achieved at a BRT of 4.5 days and HRT of 2.5 days, while a maximum biomass productivity of 78 ± 13 mgVSS·L·d (VSS: volatile suspended solids) was reached. While the results obtained so far are promising, they need to be improved to make the transition to industrial scale operations feasible.

摘要

由于微藻能够在从废水流中去除营养物质的同时生产有价值的生物质,基于微藻的废水处理是一种双赢策略。尽管最近在实验室条件下该领域已取得进展,但向工业规模的户外条件的转变仍需进一步研究。在这项工作中,一个户外中试规模的膜光生物反应器装置用于三级污水处理。研究了不同参数对微藻性能的影响,包括:温度、光照强度(太阳光和人工光照)、水力停留时间(HRT)、生物质停留时间(BRT)、空气喷射系统和进水营养物浓度。此外,还评估了微藻与氨氧化细菌对铵的竞争。在BRT为4.5天和HRT为2.5天时,分别实现了最大氮和磷去除率12.5±4.2mgN·L·d和1.5±0.4mgP·L·d,同时达到了最大生物质生产率78±13mgVSS·L·d(VSS:挥发性悬浮固体)。虽然目前获得的结果很有前景,但仍需改进,以使向工业规模运营的转变可行。

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