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利用一株分离得到的新型嗜盐异养硝化好氧反硝化(HNAD)菌株(Zobellella B307)对移动床生物膜反应器(MBBR)处理海水养殖废水的生物强化性能。

Bioaugmentation performance for moving bed biofilm reactor (MBBR) treating mariculture wastewater by an isolated novel halophilic heterotrophic nitrification aerobic denitrification (HNAD) strain (Zobellella B307).

机构信息

College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266100, China.

College of Marine Life Science, Ocean University of China, Qingdao, 266003, China.

出版信息

J Environ Manage. 2023 Jan 1;325(Pt B):116566. doi: 10.1016/j.jenvman.2022.116566. Epub 2022 Oct 23.

Abstract

Moving bed biofilm reactor (MBBR) demonstrates weak nitrogen removal for mariculture wastewater treatment under high salinity environment. An isolated novel halophilic heterotrophic nitrification aerobic denitrification (HNAD) strain (Zobellella B307) was applied in MBBR process to enhance nitrogen removal. Results showed that strain Zobellella B307 could remove 90.9% ammonia nitrogen (NH-N) and 97.1% nitrate nitrogen (NO-N) after 10 h cultivation, and strong resistance to salinity variation (high growth and nitrogen removal efficiency with salinity of 65‰) was observed. Besides, the chemical oxygen demand (COD), NH-N and NO-N removal reached 95.6%, 94.4% and 85.7% with the strain added into MBBR process. In addition, microbial community structure analysis reflected that the strain Zobellella B307 successfully proliferated (the relative abundance increased to 2.33%). The HNAD bacteria abundance increased and dominated during the nitrogen removal process with the strain inoculation. A microbial functional analysis revealed that the main dominant functional categories (carbohydrate metabolism and amino acid metabolism) increased with the bioaugmentation of strain Zobellella B307, thus improving the nitrogen removal.

摘要

移动床生物膜反应器(MBBR)在高盐环境下对海水养殖废水处理的脱氮能力较弱。本研究采用分离得到的一株新型耐盐异养硝化好氧反硝化(HNAD)菌株(Zobellella B307)来强化 MBBR 工艺的脱氮性能。结果表明,该菌株经过 10 h 培养后,对氨氮(NH-N)和硝酸盐氮(NO-N)的去除率分别达到 90.9%和 97.1%,且对盐度变化具有较强的适应性(盐度为 65‰时仍具有较高的生长和脱氮效率)。此外,当该菌株被添加到 MBBR 工艺中时,COD、NH-N 和 NO-N 的去除率分别达到 95.6%、94.4%和 85.7%。此外,微生物群落结构分析表明,该菌株 Zobellella B307 成功增殖(相对丰度增加到 2.33%)。随着菌株的接种,HNAD 细菌的丰度增加并在脱氮过程中占主导地位。微生物功能分析表明,随着 Zobellella B307 菌株的生物强化,主要的优势功能类群(碳水化合物代谢和氨基酸代谢)增加,从而提高了脱氮性能。

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