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Immobilization of aqueous and sediment-sorbed ciprofloxacin by stabilized Fe-Mn binary oxide nanoparticles: Influencing factors and reaction mechanisms
Yan, Z.-L.; Liu, Y.-G.; Tan, X.-F.; Liu, S.-B.; Zeng, G.-M.; Jiang, L.-H.; Li, M.-F.; Zhou, Z.; Liu, S.; Cai, X.-X.
刊名Chemical Engineering Journal
2017
卷号Vol.314页码:612-621
关键词Ciprofloxacin Fe-Mn binary oxide Reaction mechanisms Sediment contamination Stabilized nanoparticles Water treatment
ISSN号1385-8947
URL标识查看原文
公开日期[db:dc_date_available]
内容类型期刊论文
URI标识http://www.corc.org.cn/handle/1471x/6041743
专题湖南大学
作者单位1.a College of Environmental Science and Engineering, Hunan University, Changsha, China
2.Key Laboratory of Environmental Biology and Pollution Control , Ministry of Education, Changsha, China
3.School of Metallurgy and Environment, Central South University, Changsha, China
4.College of Art and Design, Hunan First Normal University, Changsha, China
推荐引用方式
GB/T 7714
Yan, Z.-L.,Liu, Y.-G.,Tan, X.-F.,et al. Immobilization of aqueous and sediment-sorbed ciprofloxacin by stabilized Fe-Mn binary oxide nanoparticles: Influencing factors and reaction mechanisms[J]. Chemical Engineering Journal,2017,Vol.314:612-621.
APA Yan, Z.-L..,Liu, Y.-G..,Tan, X.-F..,Liu, S.-B..,Zeng, G.-M..,...&Cai, X.-X..(2017).Immobilization of aqueous and sediment-sorbed ciprofloxacin by stabilized Fe-Mn binary oxide nanoparticles: Influencing factors and reaction mechanisms.Chemical Engineering Journal,Vol.314,612-621.
MLA Yan, Z.-L.,et al."Immobilization of aqueous and sediment-sorbed ciprofloxacin by stabilized Fe-Mn binary oxide nanoparticles: Influencing factors and reaction mechanisms".Chemical Engineering Journal Vol.314(2017):612-621.
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