Processing Eruca sativa leaves in the nanoscale and study its effectiveness for removing Cibacron red dye from their aqueous solutions

A. Mahdi Rheima, Aya Qasim Khanjar Khanjar, A. Farhan
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Abstract

    The discharge of dyes into the water is a significant source of pollution, which is especially concerning given that textile mills are the primary contributor. Nanomaterial-based solutions to this issue have required extensive research and investigation due to their complex nature. In this research, novel nanoparticle were successfully synthesized using the leaves of the Eruca sativa plant. The nano was analyzed using scanning and transmission electron microscopy (SEM and TEM) measurements, and their crystal structure was determined using the X-ray diffraction technique (XRD). The incorporation of NPs resulted in an increase in the uptake of the Cibacron red dye. At a contact time of 30 minutes, observed a faster adsorption onto ES. In the process of describing the adsorption process, the Langmuir model (R2 =0.9817) and the pseudo-second-order model (R2 = 0.9884) were the most appropriate models to use. An investigation into thermodynamics was carried out in order to arrive at the following values for the parameters of G, H, and S: -1.173 kJ/mol, 16.794 J/mol K and 56.05 J/mol. In conclusion, the novel nano that was synthesized is an excellent adsorbate surface for the Cibacron- red dye.  
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对芥菜叶片进行纳米处理,研究其对紫红染料的去除效果
向水中排放染料是一个重要的污染源,考虑到纺织厂是主要污染源,这一点尤其令人担忧。基于纳米材料的解决方案由于其复杂性,需要广泛的研究和调查。在本研究中,我们成功地合成了一种新型的纳米颗粒,这种纳米颗粒是由sativa植物的叶片合成的。利用扫描电镜(SEM)和透射电镜(TEM)对纳米材料进行了分析,并用x射线衍射技术(XRD)对纳米材料的晶体结构进行了测定。NPs的掺入导致Cibacron红染料的摄取增加。在接触时间为30分钟时,观察到在ES上的吸附速度更快。在描述吸附过程时,Langmuir模型(R2 =0.9817)和拟二阶模型(R2 = 0.9884)是最适合的模型。通过热力学研究,得到了G、H和S的参数值:-1.173 kJ/mol, 16.794 J/mol K和56.05 J/mol。综上所述,所合成的新型纳米材料是一种很好的紫红色染料的吸附表面。
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发文量
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审稿时长
18 weeks
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