首页> 外文期刊>Journal of Polymers and the Environment >Expanded Graphite Modified by CTAB-KBr/H_3PO_4 for Highly Efficient Adsorption of Dyes
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Expanded Graphite Modified by CTAB-KBr/H_3PO_4 for Highly Efficient Adsorption of Dyes

机译:CTAB-KBr / H_3PO_4修饰的膨胀石墨对染料的高效吸附

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Expanded graphite (EG) modified by CTAB-KBr/H3PO4 was synthesized via composite intercalation agent of CTAB-KBr and natural flake graphite, followed by the activation of phosphoric acid under low temperature. The resultant modified expanded graphite (M-EG) architectures showed an interconnected and continuous open microstructure, in which the number, size and volume of the pores were larger than the EG before modification. Due to their unique structural characteristics, the resulting M-EG exhibited a wide applicability and superior adsorption capacity toward dyes. The saturated adsorption capacities of M-EG were as large as 159.71 mg/g for acid brilliant blue, 48.06 mg/g for methylene blue, 56.73 mg/g for disperse yellow and 81.73 mg/g for acid red with the time of 40, 60, 50 and 50 min respectively, exceeding largely the corresponding pristine EG. Furthermore, it is surprising that the M-EG under different adsorption conditions of temperature, initial pH and metal ions still maintain good removal efficiency and more importantly, the M-EG can be easily separated and do not generate secondary contaminants. Adsorption dynamics indicated pseudo second-order model was more suitable for the investigated adsorption process, which is controlled by chemical adsorption involving uptake of acid brilliant blue onto M-EG through functional groups, but not the only factor. Adsorption isotherm indicated the adsorption process from Langmuir model to Temkin model. According to Dubinin-Radushkevich model, the calculated mean free energy implied chemisorption between M-EG and acid brilliant blue. High removal capability, fast adsorption efficiency, excellent stability and broad applicability make M-EG ideal candidates for dyes removal in practical application.
机译:通过CTAB-KBr与天然片状石墨的复合插层剂合成了CTAB-KBr / H3PO4改性的膨胀石墨(EG),然后在低温下活化磷酸。所得的改性膨胀石墨(M-EG)结构显示出相互连接和连续的开放微结构,其中孔的数量,大小和体积大于改性前的EG。由于其独特的结构特征,所得的M-EG具有广泛的适用性和对染料的优异吸附能力。 M-EG的饱和吸附容量对于酸性亮蓝色为159.71 mg / g,对于亚甲基蓝为48.06 mg / g,对于分散黄为56.73 mg / g,对于酸性红为81.73 mg / g,时间为40, 60分钟,50分钟和50分钟,大大超过了相应的原始EG。此外,令人惊讶的是,M-EG在温度,初始pH和金属离子的不同吸附条件下仍保持良好的去除效率,更重要的是,M-EG易于分离且不产生二次污染物。吸附动力学表明,伪二级模型更适合于所研究的吸附过程,这是由化学吸附控制的,该化学吸附涉及通过官能团将酸性亮蓝吸收到M-EG上,但不是唯一的因素。吸附等温线表明了从朗缪尔模型到特金模型的吸附过程。根据Dubinin-Radushkevich模型,计算出的平均自由能暗示M-EG与酸性亮蓝之间的化学吸附。高去除能力,快速吸附效率,出色的稳定性和广泛的适用性使M-EG在实际应用中成为理想的染料去除候选者。

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