Islam A B M Nazmul, Saha Prianka, Hossain Md Emran, Habib Md Ahsan, Karim Kaykobad Md Rezaul, Mahiuddin Md
Chemistry Discipline Khulna University Khulna 9208 Bangladesh.
Physics Discipline Khulna University Khulna 9208 Bangladesh.
Glob Chall. 2023 Dec 21;8(1):2300247. doi: 10.1002/gch2.202300247. eCollection 2024 Jan.
To discharge the colored effluents from industries there needs to be effective and affordable treatment options. Adsorption using reduced graphene oxide (rGO) as an adsorbent is a prominent one. In this study, green coffee bean extract (GCBE) is utilized as a safe reducing agent for the reduction of graphene oxide (GO) to synthesize rGO. The formation of rGO is confirmed by a new peak in the UV-vis spectra at 275 nm and a diffraction peak in the XRD patterns at 22°. The effective formation of rGO is further substantiated by a change in the GO peak's properties in the FTIR, EDX, and Raman spectra and a weight loss change in TGA. The SEM and TEM analyses demonstrate the effective production of the nano-sheets of rGO having exfoliated and segregated in a few layers. Furthermore, the obtained rGO exhibited outstanding efficacy in wastewater cleanup, effectively adsorbing MB as a prototype organic dye. The kinetics and isotherm study suggested that the adsorption leads by the chemisorption and monolayer formation on the homogeneous surface of rGO. The maximum adsorption capacity is found to be 89.3 mg g. This process offers a fresh opportunity for the economical and safe production of rGO for wastewater treatment.
为了排放工业产生的有色废水,需要有有效且经济实惠的处理方案。使用还原氧化石墨烯(rGO)作为吸附剂进行吸附是一种突出的方案。在本研究中,绿咖啡豆提取物(GCBE)被用作一种安全的还原剂,用于将氧化石墨烯(GO)还原以合成rGO。通过紫外可见光谱中275 nm处的新峰和X射线衍射图谱中22°处的衍射峰证实了rGO的形成。FTIR、EDX和拉曼光谱中GO峰性质的变化以及热重分析中的失重变化进一步证实了rGO的有效形成。扫描电子显微镜(SEM)和透射电子显微镜(TEM)分析表明有效地制备出了已剥离并分离为几层的rGO纳米片。此外,所获得的rGO在废水净化方面表现出优异的效果,能有效地吸附亚甲基蓝作为典型有机染料。动力学和等温线研究表明,吸附是通过化学吸附以及在rGO均匀表面形成单分子层来实现的。最大吸附容量为89.3 mg/g。该过程为经济安全地生产用于废水处理的rGO提供了新的契机。