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首页> 外文期刊>Journal of Environmental Management >Improvement of polyvinyl chloride nanofiltration membranes by incorporation of multiwalled carbon nanotubes modified with triethylenetetramine to use in treatment of dye wastewater
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Improvement of polyvinyl chloride nanofiltration membranes by incorporation of multiwalled carbon nanotubes modified with triethylenetetramine to use in treatment of dye wastewater

机译:通过掺入经三亚乙基四胺改性的多壁碳纳米管来处理染料废水来改进聚氯乙烯纳滤膜

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摘要

Multiwalled carbon nanotubes modified with triethylenetetramine (TETA) as an organic nanofiller was used in fabrication of polyvinyl chloride (PVC) nanofiltration membranes. The membranes were prepared by the phase separation method and immersion precipitation technique. For this purpose, various percentages of the TETA-MWCNTs were added to the casting solutions and the membrane films were formed and placed in a bath water. In order to identify the membranes and their properties, SEM images, contact angle and FTIR-ATR analyses were taken from the prepared nanocomposite membranes. The membranes performance in terms of water/protein/dye permeability, protein rejection and Lanasol blue 3R dye rejection were investigated. Establishing hydrogen bond between the water molecules and the functional groups of MWCNTs enhanced the hydrophilicity of the fabricated membranes and caused an increase in permeability. The permeability in the membrane containing 0.25 wt% of TETA-MWCNTs reached its highest value, and adding more amounts reduced flux by blocking the membrane pores. There was also a significant decrease in the rate of membrane fouling for the hybrid membranes. Flux recovery ratio reached from 62.2% to 76.1%. Also, rejection of BSA and Lanasol blue 3R combination dye was increased for the modified membranes.
机译:用三亚乙基四胺(TETA)改性的多壁碳纳米管作为有机纳米填料被用于制造聚氯乙烯(PVC)纳滤膜。通过相分离法和浸没沉淀法制备膜。为此目的,将各种百分比的TETA-MWCNT添加到流延溶液中,并形成膜膜并将其置于浴水中。为了鉴定膜及其性质,从制备的纳米复合膜上进行了SEM图像,接触角和FTIR-ATR分析。研究了膜在水/蛋白质/染料渗透性,蛋白质截留率和Lanasol蓝3R染料截留率方面的性能。在水分子和MWCNTs的官能团之间建立氢键可增强所制备膜的亲水性,并导致渗透性增加。含有0.25 wt%的TETA-MWCNT的膜的渗透率达到了最大值,并且通过堵塞膜孔而增加了更多的通量,从而降低了通量。混合膜的膜污染速率也显着降低。助焊剂回收率从62.2%达到76.1%。同样,对于改性膜,BSA和Lanasol蓝3R组合染料的排斥反应也增加了。

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