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一种新型的藻类辅助序批式间歇气升式生物反应器(A-SBIAB),该反应器使用基于聚酯长丝的载体处理养猪废水。

A novel algae-assisted sequencing batch and intermittent air-lift bioreactor (A-SBIAB) using polyester filament-based carriers for piggery wastewater treatment.

作者信息

Liu Jia, Du Cong, Xu Nan, Shi Chuanqi, Liu Baoling, Tu Bingjie, Zhang Keyuan, Gao Kang

机构信息

Heilongjiang Province Key Laboratory of Cold Region Wetland Ecology and Environment Research, School of Geography and Tourism, Harbin University, 109 Zhongxing Road, Harbin, 150086, China.

Shenzhen Academy of Environmental Sciences, Environmental Protection Courtyard, No. 50 Honggui 1st Street, Honggui Road, Shenzhen, 518000, China.

出版信息

Bioprocess Biosyst Eng. 2025 Sep 3. doi: 10.1007/s00449-025-03231-4.

Abstract

Algae-assisted biological wastewater treatment technology has been widely applied in wastewater treatment due to its low cost and great removal performance. However, the stabilization and sustainability of the alga-bacteria symbiosis system still need to be developed. In this work, an algae-assisted sequencing batch and intermittent air-lift bioreactor (A-SBIAB) system was constructed for removing the nutrients from the piggery wastewater. A strengthened algae-bacterial symbiosis system was also achieved with the aid of a suspended bio-carrier composed of polyester filament fixed on concentric plastic rings, which provided enhanced surface area and illumination access for microbial attachment. The removal efficiencies of chemical oxygen demand (COD), total nitrogen (TN) and total phosphorus (TP) were up to 92.0%, 81.7% and 89.3%, respectively, at the optimum parameters (Chl-a concentration of 1000 mg/m, light intensity of 6000 lx and lighting time 10 h). The Campylobacteria (72.05%), Desulfuromonadia (11.16%), Spirochaetia (3.10%) and Bacteroidia (1.73%) as the dominant bacterial communities would be responsible for the nitrate ammonification, nitrogen fixation, nitrate reduction and organics degradation, respectively. Meanwhile, Chlorophyceae (98.21%) became the overwhelming algal community, playing a positive effect on the nutrients removal.

摘要

藻类辅助生物废水处理技术因其成本低、去除性能好而在废水处理中得到广泛应用。然而,藻菌共生系统的稳定性和可持续性仍有待提高。在这项工作中,构建了一种藻类辅助序批式间歇气升式生物反应器(A-SBIAB)系统,用于去除猪场废水中的营养物质。借助由固定在同心塑料环上的聚酯长丝组成的悬浮生物载体,还实现了强化的藻菌共生系统,该载体为微生物附着提供了更大的表面积和光照条件。在最佳参数(叶绿素a浓度为1000mg/m、光照强度为6000lx、光照时间为10小时)下,化学需氧量(COD)、总氮(TN)和总磷(TP)的去除效率分别高达92.0%、81.7%和89.3%。弯曲杆菌(72.05%)、脱硫单胞菌目(11.16%)、螺旋体纲(3.10%)和拟杆菌纲(1.73%)作为主要细菌群落,将分别负责硝酸盐氨化、固氮、硝酸盐还原和有机物降解。同时,绿藻纲(98.21%)成为压倒性的藻类群落,对营养物质的去除起到了积极作用。

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