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Effective removal of microcystins using carbon nanotubes embedded with bacteria
作者姓名:YANHai  PANGang  ZOUHua  LiXianliang  CHENHao
作者单位:StateKeyLaboratoryofEnvironmentalAquaticChemistry,ResearchCenterforEco-environmentalSciences,ChineseAcademyofSciences,Beijing100085,China
摘    要:Adsorption of microcystins (MCs) by carbon nanotubes (CNTs) and clay materials was studied. Compared with various clays tested, CNTs showed a much stronger ability to adsorb MC-RR and LR that were two typical types of microcystins found in China. At initial 21.0 mg/L of MC-RR and 9.5 mg/L of MC-LR in solution, the adsorptiona mounts of MC-RR and LR by CNTs were 14.8 and 6.7 mg/gthat were about five times higher than those by the clay materials of sepiolite, kaolinite and talc, et~ In the presence of CNTs and the bacterial Ralstonia solanacearum that was firstly isolated and used for the biodegradation of MCs by the authors, a remarkable removal of MCs from water were observed. The mechanism was that CNTs could absorb large amount of both MCs and the embedded R. solanacearum so that, even when diluted by a large amount of water, the concentrations of both organic pollutants and the added bacteria could be largely enhanced on the surface of CNTs where a concerted biodegradation reaction was effectively conducted. This finding could be important for the further development of practical techniques to eliminate MCs from polluted drinking waters.

关 键 词:微藻素吸附  碳纳米管  细菌植入  粘土  Ralstonia  solanacearum  茄科青枯雷尔氏菌  废水处理
收稿时间:2003-10-31
修稿时间:2004-05-18

Effective removal of microcystins using carbon nanotubes embedded with bacteria
YANHai PANGang ZOUHua LiXianliang CHENHao.Effective removal of microcystins using carbon nanotubes embedded with bacteria[J].Chinese Science Bulletin,2004,49(16):1694-1698.
Authors:Hai?Yan  Email author" target="_blank">Gang?PanEmail author  Hua?Zou  Xianliang?Li  Hao?Chen
Institution:YAN Hai, PAN Gang, ZOU Hua, LI Xianliang & CHEN Hao State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China
Abstract:Adsorption of microcystins (MCs) by carbon nanotubes (CNTs) and clay materials was studied. Compared with various clays tested, CNTs showed a much stronger ability to adsorb MC-RR and LR that were two typical types of microcystins found in China. At initial 21.0 mg/L of MC-RR and 9.5 mg/L of MC-LR in solution, the adsorption amounts of MC-RR and LR by CNTs were 14.8 and 6.7 mg/g that were about five times higher than those by the clay ma-terials of sepiolite, kaolinite and talc, etc. In the presence of CNTs and the bacterial Ralstonia solanacearum that was firstly isolated and used for the biodegradation of MCs by the authors, a remarkable removal of MCs from water were observed. The mechanism was that CNTs could absorb large amount of both MCs and the embedded R. solanacearum so that, even when diluted by a large amount of water, the con-centrations of both organic pollutants and the added bacteria could be largely enhanced on the surface of CNTs where a concerted biodegradation reaction was effectively conducted. This finding could be important for the further development of practical techniques to eliminate MCs from polluted drinking waters.
Keywords:microcystins  carbon nanotubes  clays  Ralstonia solanacearum  
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