Institute of Chemical Sciences, Gomal University, D.I.Khan, 29050, KPK, Pakistan.
Gomal Center of Biochemistry and Biotechnology, Gomal University, D.I.Khan, 29050, KPK, Pakistan.
Environ Res. 2023 Feb 15;219:115091. doi: 10.1016/j.envres.2022.115091. Epub 2022 Dec 16.
Textile and printing industries play a vital role in the economy of any country. But the effluents of these industries, which contain toxic Methylene Blue (MB) dye when mixed with fresh water, make it unfit for human health and aquatic life. For the removal of MB, different adsorbents were used, but they were expensive, non-biodegradable or less effective. In this research, novel carboxymethyl starch grafted poly 2-carboxyethyl acrylate (CM-St-g-P2CEtA) was synthesized by reacting carboxymethyl starch with 2-carboxyethyl acrylate. The reaction followed a free radical polymerization mechanism. The structure and properties of CM-St-g-P2CEtA were investigated by advanced analytical techniques. The CM-St-g-P2CEtA was employed for the remediation of Methylene Blue (MB) dye from wastewater. The removal percentage (%R) of MB was checked under different parameters, like different pH levels, different initial concentrations of dye, different adsorbent doses, and different contact times. The results obtained during the experiment were subjected to different adsorption and kinetic models. In the kinetic investigation, the experimental results were best represented by the pseudo-second-order kinetic model due to its high R value of 0.999. Similarly, with a regression coefficient (R) value of 0.947, the Langmuir adsorption isotherm was best represented by the experimental results. The Langmuir adsorption model showed that MB dye was adsorbed on the surface of CM-St-g-P2CEtA in a monolayer pattern. The pseudo 2nd order kinetic model suggested that the adsorption process favored chemisorption mechanism. The CM-St-g-P2CEtA showed maximum percentage removal efficiency (%R) of 99.3% for MB dye.
纺织和印刷工业在任何国家的经济中都发挥着至关重要的作用。但是,这些工业的废水与淡水混合时含有有毒的亚甲蓝(MB)染料,使其不适合人类健康和水生生物。为了去除 MB,使用了不同的吸附剂,但它们昂贵、不可生物降解或效果较差。在这项研究中,通过将羧甲基淀粉与 2-羧乙基丙烯酸钠反应,合成了新型的羧甲基淀粉接枝聚 2-羧乙基丙烯酸钠(CM-St-g-P2CEtA)。反应遵循自由基聚合机理。通过先进的分析技术研究了 CM-St-g-P2CEtA 的结构和性质。将 CM-St-g-P2CEtA 用于从废水中修复亚甲蓝(MB)染料。在不同的参数下检查了 MB 的去除百分比(%R),例如不同的 pH 值水平、不同的初始染料浓度、不同的吸附剂剂量和不同的接触时间。实验中获得的结果经过不同的吸附和动力学模型的检验。在动力学研究中,由于其高 R 值为 0.999,实验结果最好由准二级动力学模型表示。同样,根据回归系数(R)值为 0.947,Langmuir 吸附等温线由实验结果最好地表示。Langmuir 吸附模型表明,MB 染料在 CM-St-g-P2CEtA 的表面以单层模式被吸附。准二级动力学模型表明,吸附过程有利于化学吸附机制。CM-St-g-P2CEtA 对 MB 染料的最大去除效率(%R)为 99.3%。