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Comparative kinetic study of functionalized carbon nanotubes and magnetic biochar for removal of Cd2+ ions from wastewater

机译:功能化碳纳米管和磁性生物炭去除废水中Cd2 +离子的对比动力学研究

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We did a comparative study between functionalized multiwall carbon nanotube (FMWCNTs), and magnetic biochar was carried out to determine the most efficient adsorbent to be employed in the Cd2+ ion removal. We optimized parameters such as agitation speed, contact time, pH and adsorbent dosage using design expert vrsion 6.08. The statistical analysis reveals that optimized condition for highest removal of Cd2+ are at pH 5.0, with dosage 1.0 g, agitation speed and contact time of 100 rpm and 90 minutes, respectively. For the initial concentration of 10mg/l, the removal efficiency of Cd2+ using FMWCNTs was 90% and and 82% of magnetic biochar. The maximum Cd2+ adsorption capacities of both FMWCNTs and magnetic biochar were calculated: 83.33mg/g and 62.5mg/g. The Langmuir and Freundlich constants for FMWCNTs were 0.056 L/mg and 13.613 L/mg, while 0.098 L/mg and 25.204 L/mg for magnetic biochar. The statistical analysis proved that FMWCNTs have better adsorption capacity compared to magnetic biochar and both models obeyed the pseudo-second-order.
机译:我们进行了功能化的多壁碳纳米管(FMWCNTs)之间的比较研究,并进行了磁性生物炭,以确定最有效的吸附剂,用于Cd2 +离子去除。我们使用设计专家vrsion 6.08优化了参数,例如搅拌速度,接触时间,pH和吸附剂用量。统计分析表明,最佳去除Cd2 +的最佳条件是pH值为5.0,剂量为1.0 g,搅拌速度和接触时间分别为100 rpm和90分钟。对于初始浓度10mg / l,使用FMWCNTs去除Cd2 +的效率分别为90%和82%的磁性生物炭。计算出FMWCNT和磁性生物炭的最大Cd2 +吸附容量:83.33mg / g和62.5mg / g。 FMWCNT的Langmuir和Freundlich常数分别为0.056 L / mg和13.613 L / mg,而磁性生物炭为0.098 L / mg和25.204 L / mg。统计分析证明,与磁性生物炭相比,FMWCNTs具有更好的吸附能力,并且两个模型均服从伪二级。

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