'/> Anion selective <ce:italic>p</ce:italic>TSA doped polyaniline@graphene oxide-multiwalled carbon nanotube composite for Cr(VI) and Congo red adsorption
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Anion selective pTSA doped polyaniline@graphene oxide-multiwalled carbon nanotube composite for Cr(VI) and Congo red adsorption

机译:阴离子选择性 p tsa掺杂聚苯胺@石墨烯氧化物 - 多壁碳纳米管复合材料,用于cr(vi)和刚果红色吸附

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Graphical abstract Display Omitted Abstract Multiwalled carbon nanotube (CNT)-graphene oxide (GO) composite was combined with polyaniline (Pani) using an oxidative polymerisation technique. The resulting Pani@GO-CNT was later doped with para toluene sulphonic acid (pTSA) to generate additional functionality. The functional groups exposed on the GO, Pani and pTSA were expected to impart a high degree of functionality to the pTSA-Pani@GO-CNT composite system. The composite was characterised by scanning electron microscopy, transmission electron microscopy, X-ray diffraction, and X-ray photoelectron spectroscopy. The characterisation results revealed the characteristics of Pani, GO, CNT, and pTSA, and suggested the successful formation of the pTSA-Pani@GO-CNT composite system. The composite was utilised successfully for the adsorptive removal of Cr(IV) and Congo red (CR) dye and the adsorption of both pollutants was found to be strongly dependent on the solution pH, adsorbate concentration, contact time, and reaction temperature. The maximum adsorption of Cr(IV) and CR was observed in an acidic medium at 30°C. The kinetics for Cr(IV) and CR adsorption was studied using pseudo-first order, pseudo-second order, and intraparticle diffusion models. The adsorption equilibrium data were also fitted to the Langmuir and Freundlich isotherm models. The thermodynamic results showed that the adsorption process was exothermic in nature. The present study provides a new methodology for the preparation of a highly functionalised Pani-based nanocomposite system and its potential applications to the adsorptive removal of a multicomponent pollutant system from an aqueous solution. ]]>
机译:<![cdata [ 图形摘要 显示省略 抽象 多壁碳纳米管(CNT)型氧化物(GO)复合材料与聚苯胺合并( PANI)使用氧化聚合技术。得到的Pani @ Go-CNT后来掺杂甲苯磺酸( p ts)以产生额外的功能。在GO,PANI和 P TSA上暴露的功能群预计将为 P TSA-PANI @赋予高度的功能。 Go-CNT复合系统。通过扫描电子显微镜,透射电子显微镜,X射线衍射和X射线光电子能力,表征复合材料。表征结果揭示了Pani,Go,Cnt和 P TSA的特征,并建议成功形成 P TSA-PANI @ go-cnt复合系统。复合材料已成功地用于对Cr(iv)的吸附除去,并且刚果红色(Cr)染料和两种污染物的吸附都被发现强烈依赖于溶液pH,吸附浓度,接触时间和反应温度。在酸性培养基中在30 ℃下在酸性培养基中观察到Cr(IV)和Cr的最大吸附。使用伪第一顺序,伪二阶阶和骨质型扩散模型研究了Cr(iv)和Cr吸附的动力学。吸附均衡数据也适用于Langmuir和Freundlich等温线模型。热力学结果表明,吸附过程本质上是放热的。本研究提供了一种新方法,用于制备高官能化的基于PANI基纳米复合体系及其潜在的应用,以从水溶液中吸附多组分污染物系统的吸附。 ]]>

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