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作 者:Qiang Wang Weilai Fu Ruiqi Lu Chunli Pan Ganfeng Yi Xian Zhang Zhiming Rao
机构地区:[1]Jiangnan University,Wuxi,Jiangsu Province,China [2]Fujian DBN Aquatic Science and Technology CO.LTD,Zhao-An,China
出 处:《Systems Microbiology and Biomanufacturing》2022年第3期580-588,共9页系统微生物学与生物制造(英文)
基 金:supported by the Foundation of Fujian Key Laboratory of Functional Aquafeed and Culture Environment Control(No.FACE20200003);the Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions,Top-notch Academic Programs Project of Jiangsu Higher Education Institutions,1.111 Project(111-2-06);Jiangsu province"Collaborative Innovation Center for Advanced Industrial Fermentation"industry development program.
摘 要:An efficient ammonia nitrogen degrading bacterial strain was isolated from a fish and shrimp pond and identified as Bacillus subtilis(Ab03).Firstly,the strain was continuously domesticated in ammonium solution to improve its nitrogen removal capacity.The performance of the strain in terms of nitrogen removal efficiency under different culture conditions was then examined.Finally,the nitrogen removal process and related strain mechanisms were analyzed by nitrogen balance.The results showed the strain Ab03 could remove 91.67% of NH_(4)^(+)-N at 300 mg/L under the conditions of glucose as the single carbon source,C/N of 15,pH of 7.5,the temperature of 35℃ and dissolved oxygen of 7-8 mg/L.It was also found that under conditions where ammonia nitrogen was the only nitrogen source,strain Ab03 could also undergo aerobic denitrification for simultaneous conversion,with a final gas conversion rate of 74.81%.
关 键 词:Bacillus subtilis Ammonia nitrogen Nitrogen balance Simultaneous conversion
分 类 号:TG1[金属学及工艺—金属学]
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