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Optimization of Chitosan Glutaraldehyde-Crosslinked Beads for Reactive Blue 4 Anionic Dye Removal Using a Surface Response Methodology

机译:用表面响应法测定壳聚糖戊二醛 - 交联珠的壳聚糖戊二醛 - 交联珠 - 反应性染料去除

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摘要

The use of dyes at an industrial level has become problematic, since the discharge of dye effluents into water disturbs the photosynthetic activity of numerous aquatic organisms by reducing the penetration of light and oxygen, in addition to causing carcinogenic diseases and mutagenic effects in humans, as well as alterations in different ecosystems. Chitosan (CS) is suitable for removing anionic dyes since it has favorable properties, such as acquiring a positive charge and a typical macromolecular structure of polysaccharides. In this study, the optimization of CS beads crosslinked with glutaraldehyde (GA) for the adsorption of reactive blue dye 4 (RB4) in an aqueous solution was carried out. In this sense, the response surface methodology (RSM) was applied to evaluate the concentration of CS, GA, and sodium hydroxide on the swelling degree in the GA-crosslinked CS beads. In the same way, RSM was applied to optimize the adsorption process of the RB4 dye as a function of the initial pH of the solution, initial concentration of the dye, and adsorbent dose. The crosslinking reaction was investigated by scanning electron microscopy (SEM), Fourier transformed infrared spectroscopy (FTIR), and X-ray diffractometry (XRD). The design described for the swelling degree showed an R2 (coefficient of determination) adjusted of 0.8634 and optimized concentrations (CS 3.3% w/v, GA 1.7% v/v, and NaOH 1.3 M) that were conveniently applied with a concentration of CS at 3.0% w/v to decrease the viscosity and facilitate the formation of the beads. In the RB4 dye adsorption design, an adjusted R2 (0.8280) with good correlation was observed, where the optimized conditions were: pH = 2, adsorbent dose 0.6 g, and initial concentration of RB4 dye 5 mg/L. The kinetic behavior and the adsorption isotherm allowed us to conclude that the GA-crosslinked CS beads’ adsorption mechanism was controlled mainly by chemisorption interactions, demonstrating its applicability in systems that require the removal of contaminants with similar structures to the model presented.
机译:在工业水平下使用染料已经存在问题,因为通过降低光和氧气的渗透和氧气的渗透和致癌疾病和人类的致突效应以及不同生态系统中的改变。壳聚糖(Cs)适用于除去阴离子染料,因为它具有有利的性质,例如获取正电荷和多糖的典型大分子结构。在本研究中,进行了用戊二醛(Ga)交联用于在水溶液中吸附的戊二醛(Ga)的Cs珠子的优化。从这个意义上讲,应用响应表面方法(RSM)来评估GA交联的Cs珠粒中Cs,Ga和氢氧化钠浓度的浓度。以相同的方式,应用RSM以优化RB4染料的吸附过程作为溶液的初始pH,初始浓度的染料和吸附剂量的函数。通过扫描电子显微镜(SEM),傅里叶转化的红外光谱(FTIR)和X射线衍射法(XRD)来研究交联反应。所描述的溶胀度描述的设计表明,调节的R 2(测定系数)调节0.8634,优化的浓度(Cs 3.3%w / V,Ga 1.7%v / v和NaOH 1.3m),其浓度为Cs浓度3.0%w / v以降低粘度并促进珠粒的形成。在RB4染料吸附设计中,观察到具有良好相关性的调节R2(0.8280),其中优化的条件是:pH = 2,吸附剂剂量0.6g,以及RB4染料5mg / L的初始浓度。动力学行为和吸附等温物允许我们得出结论,Ga交联的Cs珠子的吸附机制主要通过化学吸附相互作用来控制,证明其在需要除去具有相似结构的污染物的系统中的适用性。

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