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纳米气泡曝气的传质及其对生物膜生长的影响:微生物活性和结构特性。

Mass transfer of nanobubble aeration and its effect on biofilm growth: Microbial activity and structural properties.

机构信息

National Engineering Laboratory for Sustainable Sludge Management & Resourcelization Technology, Harbin Institute of Technology, Harbin 150090, China; State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.

National Engineering Laboratory for Sustainable Sludge Management & Resourcelization Technology, Harbin Institute of Technology, Harbin 150090, China; State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.

出版信息

Sci Total Environ. 2020 Feb 10;703:134976. doi: 10.1016/j.scitotenv.2019.134976. Epub 2019 Nov 2.

Abstract

It is necessary to improve the performance and reduce the aeration cost is of wastewater treatment by aerobic biofilm systems. Nanobubble aeration is supposed to be a promising method to achieve these goals. Compared with coarse bubbles, dissolved oxygen profiling showed that the nanobubbles provided more oxygen to biofilms, offering superior oxygen supply capacity and 1.5 times higher oxygen transfer efficiency. Nanobubble aeration accelerated the growth of the biofilm and achieved better removal efficiencies of chemical oxygen demand and ammonia, with as maximum as six times higher dehydrogenase activity, and more extracellular polymeric substance content than when using the traditional aeration mode. This is attributed to the enhancement of metabolism and the proliferation of microorganisms. Confocal laser-scanning microscopy imaging confirmed that nanobubble aeration affected the components of biofilm by shifting the microbial community and changing its metabolic pathways of biofilms, such as carbohydrate synthesis. Nanobubble aeration resulted in an energy saving of approximately 80%. The assessment of nanobubble aerated biofilm growth suggests that this technique can offer a rapid-initiation, high efficiency, and low-cost strategy for aerobic biofilm systems in wastewater treatment.

摘要

为了提高性能和降低曝气成本,需要对好氧生物膜系统进行处理。纳米气泡曝气被认为是实现这些目标的一种很有前途的方法。与粗气泡相比,溶解氧分布表明,纳米气泡为生物膜提供了更多的氧气,提供了更高的氧气供应能力和 1.5 倍的氧气转移效率。纳米气泡曝气加速了生物膜的生长,并实现了更好的化学需氧量和氨去除效率,脱氢酶活性最高可达六倍,胞外聚合物含量也高于传统曝气模式。这归因于微生物代谢和增殖的增强。共聚焦激光扫描显微镜成像证实,纳米气泡曝气通过改变微生物群落和改变生物膜的代谢途径,如碳水化合物合成,影响生物膜的组成。纳米气泡曝气可节省约 80%的能源。对纳米气泡曝气生物膜生长的评估表明,该技术可为废水处理中的好氧生物膜系统提供快速启动、高效和低成本的策略。

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