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Adsorption of Dyes by Chitosan-Selenium Nanoparticles: Recent Developments and Adsorption Mechanisms

机译:含氯锡 - 硒纳米粒子的染料吸附:最近的发展和吸附机制

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Most of the dyes are a dangerous class of water contaminants that have affected the environment drastically. Nano-sized compositeis the best decision cutting edge adsorbent for the evacuation of water poisons as such materials are related to the attributes of straightforwardness, adaptability, adequacy, and high surface reactivity. In this investigation, we have synthesized a nanostructured Chitosan-Selenium nanoparticle by green synthesis method using Justicia adhatoda plant leaves extract. Synthesis and characterization of Chitosan-Selenium nanoparticle were described by UVvisible spectroscopy, FTIR spectrum examinations, Particle Size Analysis, and XRD Spectrum analysis. From the outcomes, it was inferred that the Chitosan-Selenium nanoparticle was additionally utilized as an adsorbent for the expulsion of Rhodamine dye from the aqueous solution. Langmuir isotherm model was effectively usedfor the adsorption study of Chitosan-Selenium nanoparticle adsorbent. For the adsorption studies, parameters such asdosages, pH, and temperature were studied. The adsorption process was remarkably fast and reached equilibrium within 24hrs. The isotherm information was steady with the Langmuir model, and the most extreme adsorption limits of the Chitosan-Selenium nanoparticle adsorbent was 34.5mg.g-1 for Rhodamine dye. Accordingly, nanoparticleswill be the only wayfor the future planned water treatment process.
机译:大多数染料是一类危险的水污染物,这些水污染物急剧影响了环境。纳米大小的综合体是疏散水毒药的最佳决策切削刃吸附剂与直接,适应性,充分性和高表面反应性的属性有关。在该研究中,我们通过使用Justicia Adhatoda植物叶提取物通过绿色合成方法合成纳米结构壳聚糖硒纳米粒子。通过UV可见的光谱,FTIR谱检查,粒度分析和XRD谱分析描述了壳聚糖硒纳米粒子的合成与表征。从结果中,推断出壳聚糖硒纳米粒子另外用作从水溶液中排出罗丹明染料的吸附剂。 Langmuir等温模型有效地用于壳聚糖硒纳米粒子吸附剂的吸附研究。对于吸附研究,研究了这种多种姿势,pH和温度。吸附过程在24小时内非常快速且达到平衡。等温信息随着Langmuir模型的稳定,丁糖硒纳米粒子吸附剂的最极端吸附极限为罗丹明染料的34.5mg.g-1。因此,纳米粒子将成为未来计划水处​​理过程的唯一途径。

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