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Adsorption of atrazine by natural organic matter and surfactant dispersed carbon nanotubes 被引量:7

Adsorption of atrazine by natural organic matter and surfactant dispersed carbon nanotubes
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摘要 The aggregation and dispersion behaviors of carbon nanotubes (CNTs) can regulate the environmental spread and fate of CNTs, as well as the organic pollutants adsorbed onto them. In this study, multi-walled carbon nanotubes (MWNTs) and single-walled carbon nanotubes (SWNTs) were surface modified with humic acids from different sources and with surfactants of different ionic types. The dispersion stability of surface modified CNTs was observed by UV-Vis spectrophotometry. The effect of humic acid and surfactant dispersion on the adsorption of atrazine by CNTs was investigated by batch equilibrium experiments. Both humic acid and surfactant could effectively disperse MWNTs, but not SWNTs, into stable suspensions under the studied conditions. Surface modified CNTs had a greatly reduced capacity for adsorption of atrazine. The inhibitory effect of peat humic acid was relatively stronger than that of soil humic acid, but the two surfactants had a similar inhibitory effect on atrazine adsorption by the two CNT types. Increases in surfactant concentration resulted in rapid decreases in the adsorption of atrazine by CNTs when the surfactant concentration was less than 0.5 critical micelle concentration. The aggregation and dispersion behaviors of carbon nanotubes (CNTs) can regulate the environmental spread and fate of CNTs, as well as the organic pollutants adsorbed onto them. In this study, multi-walled carbon nanotubes (MWNTs) and single-walled carbon nanotubes (SWNTs) were surface modified with humic acids from different sources and with surfactants of different ionic types. The dispersion stability of surface modified CNTs was observed by UV-Vis spectrophotometry. The effect of humic acid and surfactant dispersion on the adsorption of atrazine by CNTs was investigated by batch equilibrium experiments. Both humic acid and surfactant could effectively disperse MWNTs, but not SWNTs, into stable suspensions under the studied conditions. Surface modified CNTs had a greatly reduced capacity for adsorption of atrazine. The inhibitory effect of peat humic acid was relatively stronger than that of soil humic acid, but the two surfactants had a similar inhibitory effect on atrazine adsorption by the two CNT types. Increases in surfactant concentration resulted in rapid decreases in the adsorption of atrazine by CNTs when the surfactant concentration was less than 0.5 critical micelle concentration.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2010年第8期1195-1202,共8页 环境科学学报(英文版)
基金 supported by the National NaturalScience Foundation of China (No 20777081, 50878204,20537020) the Scientific Research Foundation forthe Returned Overseas Chinese Scholars, State EducationMinistry of China
关键词 carbon nanotubes ADSORPTION DISPERSION ATRAZINE carbon nanotubes adsorption dispersion atrazine
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  • 1Chen W,Duan L,Zhu D Q,2007.Adsorption of polar and nonpolax organic chemicals to carbon nanotubes.Environmental Science and Technology,41:8295-8300.
  • 2Chingombe P,Saha B,Wakeman R J,2006.Sorption of atrazine on conventional and surface modified activated carbons.Journal of Colloid and Interface Science,302:408-416.
  • 3Colvin V L,2003.The potential environmental impact of engineered nanomaterials.Nature Biotechnology,21:1166-1170.
  • 4Hyung H,Frotner J D,Hughes J B,Kim J H,2007.Natural organic matter stabilizes carbon nanotubes in the aqueous phase.Environmental Science and Technology,41:179-184.
  • 5Hyung H,Kiln J H,2008.Natural organic matter(NOM)adsorption to multi-walled carbon nanotubes:effect of NOM characteristics and water quality parameters.Environmental Science and Technology,42:4416-4421.
  • 6Jia G,Wang H F,Yan L,Wang X,Pei R J,Yah T et al.,2005.Cytotoxicity of carbon nanomaterials:single-wall nanotube,multi-wall nanotube,and fullercne.Environmental Science and Technology,39:1378-1383.
  • 7Jiang L Q,Gao J,Sun J,2003.Production of aqueous colloidal dispersions of carbon nanotubes.Journal of Colloid and Interface Science,260:89-94.
  • 8Kuo C Y,Wu C H,Wu J Y,2008.Adsorption of direct dyes from aqueous solutions by carbon nanotubes:Determination of equilibrium,kinetics and thermodynamics parameters.Journal of Colloid and Interface Science,327:308-315.
  • 9Li Q,Snoeyink V L,Campos C,Matin B J,2002.Displacement effect of NOM on atrazine adsorption by PACs with different pore size distributions.Environmental Science and Technology,36:1510-1515.
  • 10Lin D H,Xing B S,2008.Adsorption of phenolic compounds by carbon nanotubes:role of aromaticity and substitution of hydroxyl groups.Environmental Science and Technology,42:7254-7259.

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