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Removal of Chromium (VI) from polluted water using carbon nanotubes supported with activated carbon

机译:使用活性炭支撑的碳纳米管从污水中除去铬(VI)

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The environmental application of carbon nanotubes supported by activated carbon to remove chromium (VI) ions from polluted water was investigated. The experimental conditions that enhance the adsorption of Cr (VI) by carbon nanotubes have been studied. These conditions include the initial concentration of Cr (VI), the pH, the dosage of adsorbent, the contact time and the agitation speed. The activated carbon either alone or being coated with carbon nanotubes has be characterized by field emission scanning electron microscopy. A fractional factorial design was used to obtain a complete randomize experiment statistically. Adsorption isotherms have been applied to study the kinetics of the adsorption behavior and to determine the adsorption capacity of the absorbents. Regression analysis was used to study the empirical statistics of the experiment and to identify the significance of the parameters used to enhance the adsorption capacity. It was found that the activated carbon coated with carbon nanotubes is considered as an excellent adsorbent to Cr (VI) ions with an adsorption capacity of 9.0 mg/g.
机译:研究了由活性炭支撑的碳纳米管的环境施加,以从污染水中除去铬(VI)离子。已经研究了增强Cr(VI)对碳纳米管的吸附的实验条件。这些条件包括Cr(VI)的初始浓度,pH,吸附剂的剂量,接触时间和搅拌速度。通过现场发射扫描电子显微镜表征,单独或涂覆碳纳米管的活性炭。分数阶乘设计用于统计上获得完整的随机实验。已经应用吸附等温线来研究吸附行为的动力学,并确定吸收剂的吸附能力。回归分析用于研究实验的经验统计,并确定用于增强吸附能力的参数的重要性。发现涂有碳纳米管的活性炭被认为是与Cr(VI)离子的优异吸附剂,其吸附能力为9.0mg / g。

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