Alam Sultan, Badshah Imran, Khan Shahid, Shah Luqman Ali, Zahoor Muhammad, Umar Muhammad Naveed, Ullah Riaz, Ali Essam A
Department of Chemistry, University of Malakand, Chakdara Dir Lower, 18800, Pakistan.
National Center of Excellence in Physical Chemistry (NCE), University of Peshawar, Pakistan.
Heliyon. 2024 Feb 9;10(4):e25836. doi: 10.1016/j.heliyon.2024.e25836. eCollection 2024 Feb 29.
Most of the dyes used in various industries are non-biodegradable and carcinogenic in nature. Therefore, elimination of dyes from textile wastes is mandatory to safeguard the life of human, aquatic animals and aquatic plants. In this connection an effective and eco-friendly hydrogel was synthesized from acrylamide, cellulose, clay, and copper salt abbreviated as AMPS(PHE-Ce)/MC-Cu. The fabricated hydrogel was used as sorbent and catalyst for the adsorption and catalytic reduction of basic blue 3. SEM analysis showed granular texture with small holes or cracks which is basic criteria for an adsorbent surface. The results showed that the BET surface area and the Langmuir surface area were, respectively, 27.87 and 40.32 m/g. The FTIR analysis confirmed the synthesis of hydrogel, as is evident from peaks at 3500, 3439, 2996, 2414, and 1650 cm, which indicated the presence of OH or NH, -C-O-C-, CH (C[bond, double bond]O), C-N bonds correspondingly. Thermal stability was confirmed by TGA analysis where weight loss in three stages has been observed. The presence of copper was confirmed through EDX (5.02%) indicating the incorporation of cupper nanoparticles in hydrogel surface. The high adsorption capability of 1590 mg/g as recorded for basic blue-3 dye indicates it to be an efficient adsorbent. The swelling behavior characterized by Fickian diffusion up to 7898% clearly indicated significant swelling. Pseudo 2nd-order kinetics and the Langmuir isotherm models were more fit in unfolding kinetics and isothermal data indicating chemisorption with monolayer sorption as evident from the high R values (0.999) of each model. Thermodynamics considerations indicated that the adsorption process is endothermic with a positive enthalpy value of 1371.32 Jmol. The positive entropy value of 19.70 J/mol.K signifies a higher degree of disorder at the solid-liquid interface. The findings provided a valuable insights into the hydrogel's capacity to adsorb cationic dyes and reduce them catalytically, pointing towards its potential applications in addressing environmental challenges.
各行业使用的大多数染料本质上都是不可生物降解且具有致癌性的。因此,从纺织废料中去除染料对于保护人类、水生动物和水生植物的生命至关重要。在此方面,一种由丙烯酰胺、纤维素、粘土和铜盐合成的有效且环保的水凝胶被简称为AMPS(PHE-Ce)/MC-Cu。制备的水凝胶用作吸附剂和催化剂,用于吸附和催化还原碱性蓝3。扫描电子显微镜分析显示其具有带小孔或裂缝的颗粒质地,这是吸附剂表面的基本标准。结果表明,BET表面积和朗缪尔表面积分别为27.87和40.32 m/g。傅里叶变换红外光谱分析证实了水凝胶的合成,从3500、3439、2996、2414和1650 cm处的峰可以明显看出,这些峰分别表明存在OH或NH、-C-O-C-、CH (C[双键]O)、C-N键。热重分析证实了热稳定性,观察到其在三个阶段失重。通过能谱分析(5.02%)证实了铜的存在,表明铜纳米颗粒掺入了水凝胶表面。碱性蓝3染料的高吸附能力达到1590 mg/g,表明它是一种高效吸附剂。以菲克扩散为特征的溶胀行为高达7898%,清楚地表明有显著溶胀。准二级动力学和朗缪尔等温线模型更适合解释动力学和等温数据,表明为化学吸附且为单层吸附,每个模型的高R值(0.999)证明了这一点。热力学考虑表明吸附过程是吸热的,焓值为正,为1371.32 J/mol。19.70 J/mol·K的正熵值表明固液界面处的无序程度较高。这些发现为水凝胶吸附阳离子染料并对其进行催化还原的能力提供了有价值的见解,表明其在应对环境挑战方面的潜在应用。