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Fast removal of tetracycline from wastewater by reduced graphene oxide prepared via microwave-assisted ethylenediamine-N,N '-disuccinic acid induction method

机译:微波辅助乙二胺-N,N'-二丁二酸诱导法制备氧化还原石墨烯快速去除废水中的四环素

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摘要

A green reagent of ethylenediamine-N,N'-disuccinic acid (EDDS) was reported herein for reduction of graphene oxide (GO) with microwave assistance. The characteristics of EDDS reduced graphene oxide (ERG), and the tetracycline (TC) adsorption behavior of ERG was investigated. The results showed that the deoxygenation efficiency of GO strongly depended on the EDDS amount and the ERG can be successively obtained by recycled EDDS. The ERG obtained at EDDS/GO ratio of 5 (ERG5) exhibited a maximum capacity of 558.66 mg/g for TC adsorption, which is superior to GO and ERGs obtained at other EDDS/GO ratio. The adsorption reached equilibrium within 10 min, and the driving forces are likely the van der Waals forces, pi-pi electron-donor-acceptor (EDA) interaction and cation-pi bonding between TC and the ERG surface. The adsorbent dose, pH, temperature, initial TC concentration, and ionic strength significantly affect the TC adsorption. The pseudo-second-order kinetics describes TC adsorption process very well, with correlation coefficients (R-2 ) greater than 0.99. The adsorption isotherm was best fitted by Freundlich equation, followed by Langmuir, Temkin, and Hill model equations. Analysis on adsorption thermodynamics shows that the adsorption is a spontaneous endothermic process. The ERG could be a cost-effective and promising sorbent for TC wastewater treatment due to its high-efficiency performance in real river water, medical wastewater, and municipal wastewater.
机译:本文报道了乙二胺-N,N'-二琥珀酸的绿色试剂(EDDS),用于在微波辅助下还原氧化石墨烯(GO)。研究了EDDS还原氧化石墨烯(ERG)的特性,以及ERG的四环素(TC)吸附行为。结果表明,GO的脱氧效率在很大程度上取决于EDDS的量,回收的EDDS可以连续获得ERG。 EDDS / GO比为5(ERG5)时获得的ERG表现出最大558.66 mg / g的TC吸附能力,优于GO和其他EDDS / GO比下获得的ERGs。吸附在10分钟内达到平衡,驱动力可能是范德华力,pi-pi电子供体-受体(EDA)相互作用和TC与ERG表面之间的阳离子-pi键。吸附剂的剂量,pH,温度,初始TC浓度和离子强度会显着影响TC的吸附。拟二级动力学很好地描述了TC吸附过程,相关系数(R-2)大于0.99。吸附等温线最好用Freundlich方程拟合,然后用Langmuir,Temkin和Hill模型方程拟合。吸附热力学分析表明,吸附是自发的吸热过程。由于ERG在实际河水,医疗废水和市政废水中具有高效性能,因此它可能是一种经济有效且前景广阔的TC废水处理吸附剂。

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