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首页> 外文期刊>Chemosphere >A novel environmental-friendly nanobiocomposite synthesis by EDTA and chitosan functionalized magnetic graphene oxide for high removal of Rhodamine B: Adsorption mechanism and separation property
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A novel environmental-friendly nanobiocomposite synthesis by EDTA and chitosan functionalized magnetic graphene oxide for high removal of Rhodamine B: Adsorption mechanism and separation property

机译:EDTA与壳聚糖官能化磁性氧化石墨烯的新型环保纳米生物复合材料的高去除若丹明B的研究:吸附机理与分离性能

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摘要

The synergistic combination of two different environmentally friendly functional groups (EDTA and Chitosan) with magnetic graphene oxide (mGO) nano-sheets was used for synthesizing a promising nanobiocomposite adsorbent (CS-EDTA-mGO) for efficient removal of a cationic dye, Rhodamine B (RhB), from aqueous solutions. CS-EDTA-mGO nanobiocomposite was characterized by XRD, FTIR, VSM, TGA, and zeta potential. Further, the morphological features of the synthesized graphene oxide and mGO were examined by SEM technique. The adsorption conditions were designed and optimized by experimental design applied by faced-central composite design. CS-EDTA-mGO indicated high sorption capacity where the R% of 92% was obtained under optimal conditions (sorbent dosage = 0.14 g L-1; dye concentration =114 mg L-1; pH = 7.5; temperature = 33 degrees C). The result of kinetics studies revealed that the adsorption was considerably fast and the data followed the pseudo-second-order kinetic model. The adsorption equilibrium of the cationic dye by CS-EDTA-mGO showed that the Langmuir model fitted the experimental data significantly and the maximum adsorption capacity estimated from Langmuir model was 1085.3 mg g(-1),which was highly consistent with the maximum experimental adsorption capacity. The thermodynamic parameters represented that the interaction in the adsorption process was endothermic and the randomness at the solid/solution interface increased during the process. Both physical and chemical mechanisms were involved in the adsorption process, owing to the complicated structural characteristics of the nanobiocomposite. After seven cycles of adsorption/desorption, the removal efficiency of CS-EDTA-mGO nanobiocomposite was still over 80% with little loss of adsorption capacity (approximate to 2%). (C) 2018 Elsevier Ltd. All rights reserved.
机译:两种不同的环境友好官能团(EDTA和壳聚糖)与磁性氧化石墨烯(mGO)纳米片的协同组合用于合成有前途的纳米生物复合吸附剂(CS-EDTA-mGO),以有效去除阳离子染料罗丹明B (RhB),来自水溶液。 CS-EDTA-mGO纳米生物复合材料的特征在于XRD,FTIR,VSM,TGA和Zeta电位。此外,通过SEM技术检查了合成的氧化石墨烯和mGO的形态特征。通过面对中心复合设计的实验设计,设计并优化了吸附条件。 CS-EDTA-mGO表示高吸附能力,其中在最佳条件下可获得92%的R%(吸附剂量= 0.14 g L-1;染料浓度= 114 mg L-1; pH = 7.5;温度= 33摄氏度) 。动力学研究的结果表明,吸附非常快,数据遵循伪二级动力学模型。 CS-EDTA-mGO对阳离子染料的吸附平衡表明,Langmuir模型与实验数据吻合良好,Langmuir模型估计的最大吸附容量为1085.3 mg g(-1),与最大实验吸附量高度一致容量。热力学参数表明,吸附过程中的相互作用是吸热的,并且在该过程中固/溶液界面的无规性增加。由于纳米生物复合材料的复杂结构特征,物理和化学机理都参与了吸附过程。经过七个吸附/解吸循环后,CS-EDTA-mGO纳米生物复合材料的去除效率仍超过80%,而吸附能力几乎没有损失(约2%)。 (C)2018 Elsevier Ltd.保留所有权利。

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