Liu Lili, Chen Xin, Wang Zhiping, Wang Xixi, Lin Sen
State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, East China University of Science and Technology Shanghai 200237 China
Shanghai Institute of Pollution Control and Ecological Security Shanghai China.
RSC Adv. 2019 Aug 9;9(43):24760-24769. doi: 10.1039/c9ra03374b. eCollection 2019 Aug 8.
Long-root 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 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 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 plants.
龙须草在富营养化处理中显示出巨大潜力,但其植株的大量处置限制了其大规模应用。在本研究中,作为一种潜在的回收和修复技术,对以收割的龙须草植物制备的新型多组活性炭(MGAC)对双酚A的吸附进行了研究。MGAC对水溶液中的双酚A表现出优异的吸附性能,在20、30和40℃下,吸附在4小时内可达到平衡,饱和吸附容量分别可达110.7、110.5和75.50mg/g。基于对吸附过程的分析,证实π-π相互作用和氢键是吸附的主要驱动力,MGAC表面的含氧官能团可通过电子共享或电子转移促进吸附。此外,热力学结果表明吸附是一个自发的放热反应。此外,MGAC可用5%的NaOH溶液轻松再生,经过5次再处理循环后,其对双酚A的初始容量保留超过50%。这些结果表明MGAC在去除双酚A的废水处理中具有广阔的应用前景,也是龙须草植物的一种资源回收方法。