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首页> 外文期刊>RSC Advances >The removal mechanism and performance of tetrabromobisphenol A with a novel multi-group activated carbon from recycling long-root Eichhornia crassipes plants
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The removal mechanism and performance of tetrabromobisphenol A with a novel multi-group activated carbon from recycling long-root Eichhornia crassipes plants

机译:一种新型多族活性炭对长根凤眼莲的回收利用对四溴双酚A的去除机理及性能

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摘要

Long-root Eichhornia crassipes has shown great potential in eutrophication treatments while the heavy disposal of its plants limits its large-scale application. In this study, the adsorption of TBBPA by a novel multi-group activated carbon (MGAC), prepared from the reaped long-root Eichhornia crassipes plants has been investigated as a potential recycling and remediation technology. The MGAC showed great adsorption performance for aqueous TBBPA in that the adsorption could arrive at equilibrium in 4 h and the saturated adsorption capacities could reach up to 110.7, 110.5 and 75.50 mg g ~(?1) at 20, 30 and 40 °C, respectively. Based on the analysis of adsorption processes, it was confirmed that π–π interaction and hydrogen bonding were the major impetuses for the adsorption and the oxygen-containing functional groups on the MGAC surface could facilitate the adsorption by either electron sharing or electron transfer. In addition, the thermodynamic results showed that the adsorption was a spontaneous and exothermic reaction. Futhermore, the MGAC could be regenerated easily by 5% NaOH solution and retained over 50% of its initial capacities for TBBPA after 5 reprocessing cycles. These results indicate the promising application of MGAC in the wastewater treatment for TBBPA removal and a resource recycling method for the long-root Eichhornia crassipes plants.
机译:长根凤眼莲在富营养化处理中显示出巨大潜力,而对植物的大量处理限制了其大规模应用。在这项研究中,作为一种潜在的回收和修复技术,已经研究了一种新型的多组活性炭(MGAC)对TBBPA的吸附,该活性炭是从收割的长根凤眼兰植物中制备的。 MGAC对TBBPA水溶液具有很好的吸附性能,其吸附能力在4 h内达到平衡,并且在20、30和40°C时饱和吸附容量分别达到110.7、110.5和75.50 mg g〜(?1),分别。通过对吸附过程的分析,可以确定π-π相互作用和氢键是吸附的主要推动力,并且MGAC表面的含氧官能团可以通过电子共享或电子转移促进吸附。另外,热力学结果表明吸附是自发的放热反应。此外,MGAC可以很容易地用5%的NaOH溶液再生,并在5个后处理循环后保留了其初始容量的50%以上的TBBPA。这些结果表明,MGAC在去除TBBPA的废水处理中具有广阔的应用前景,并且是长根凤眼莲植物的资源回收方法。

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