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首页> 外文期刊>Marine biotechnology >A novel approach for bioremediation of a coastal marine wastewater effluent based on artificial microbial mats.
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A novel approach for bioremediation of a coastal marine wastewater effluent based on artificial microbial mats.

机译:一种基于人工微生物垫的滨海海水废水生物修复的新方法。

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摘要

A novel alternative for wastewater effluent bioremediation was developed using constructed microbial mats on low-density polyester. This biotechnology showed high removal efficiencies for nitrogen and phosphorous in a short retention time (48 h): 94% for orthophosphate (7.78 g [Formula: see text] m(3) d(-1)), 79% for ammonium (11.30 g [Formula: see text] m(-3) d(-1)), 78% for nitrite (7.46 g [Formula: see text] m(-3) d(-1)), and 83% for nitrate (8.55 g [Formula: see text] m(-3) d(-1)). The microbial mats were dominated by Cyanobacteria genera such as Chroococcus sp., Lyngbya sp., and bacteria of the subclass Proteobacteria representative of the Eubacteria Domain. Nitzschia sp. was the dominant Eukaryote Domain. Various N and P substrates in the wastewater permit the growth of self-forming and self-sustaining bacterial, microalgal, and cyanobacterial communities on a polyester support. The result is the continuous, self-sufficient growth of microbial mats. This is an innovative, economical, and environmentally safe alternative for the treatment of wastewater effluents in coastal marine environments.
机译:使用在低密度聚酯上构建的微生物垫,开发了一种新型的废水生物修复方法。该生物技术在短的保留时间内(48小时)显示出对氮和磷的高去除效率:正磷酸盐(7.78 g [公式:参见文本] m(3)d(-1))为94%,铵盐(11.30)为79%。 g [公式:参见文字] m(-3)d(-1)),亚硝酸盐(7.46 g)为78%,硝酸盐(83%) 8.55 g [公式:参见文本] m(-3)d(-1))。微生物垫主要由蓝细菌属(例如蓝球菌属,Lyngbya属细菌)和代表真细菌域的变形杆菌属的细菌所控制。尼兹菌属是占主导地位的真核生物领域。废水中的各种N和P底物可以在聚酯载体上生长自形成并自持的细菌,微藻类和蓝细菌群落。结果是微生物垫不断,自给自足地生长。这是一种创新,经济,环保的替代品,可用于处理沿海海洋环境中的废水。

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