Kinetics, equilibrium and thermodynamics investigations of polypyrrole and polyaniline composites with Oryza sativa biomass for the removal of Nitenpyram insecticide

Rabia Asghar, H. N. Bhatti, Amina Khan, F. F. Al-Fawzan, Munawar Iqbal
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Abstract

In this research, composite materials were prepared by combining polypyrrole (PPY) and polyaniline (PAN) with Oryza sativa (OS). These biocomposites were utilized for the adsorption of Nitenpyram (insecticide), from aqueous solutions. The study involved the optimization of various process variables including contact time, pH, adsorbent dose and initial Nitenpyram concentration. The maximum sorption efficiency of OS for Nitenpyram was observed at pH 2, biosorbent dose of 0.05 g, an initial Nitenpyram concentration of 125 mg/L and contact time of 30 min. To analyze the Nitenpyram adsorption process, the adsorption data for OS and its composites (OS-PPY and OS-PAN) were subjected to equilibrium isotherms and kinetics models (pseudo-first and pseudo-second-orders). The Langmuir isotherm and pseudo-second-order explained the Nitenpyram adsorption data. Furthermore, the feasibility of the adsorption was evaluated by employing thermodynamic studies. The outcomes of the study demonstrated the promising efficiency of the synthesized biocomposites for Nitenpyram removal, which was 37.03, 43.0 and 35.71 (mg/g) in the case of OS, OS-PPY and OS-PAN composites. These findings suggest that the composites have promising potential for the removal of pesticides from wastewater, contributing to the development of effective strategies for environmental remediation.
聚吡咯和聚苯胺与大豆生物质复合材料去除硝虫杀虫剂的动力学、平衡和热力学研究
在这项研究中,通过将聚吡咯(PPY)和聚苯胺(PAN)与水稻(OS)结合,制备出了复合材料。这些生物复合材料用于吸附水溶液中的杀虫剂硝虫酰胺。该研究涉及各种工艺变量的优化,包括接触时间、pH 值、吸附剂剂量和初始硝虫嗪浓度。在 pH 值为 2、生物吸附剂剂量为 0.05 克、Nitenpyram 初始浓度为 125 毫克/升和接触时间为 30 分钟时,OS 对 Nitenpyram 的吸附效率最高。为了分析 Nitenpyram 的吸附过程,对 OS 及其复合材料(OS-PPY 和 OS-PAN)的吸附数据进行了平衡等温线和动力学模型(伪一阶和伪二阶)分析。朗缪尔等温线和伪二阶模型解释了硝酸吡喃的吸附数据。此外,还通过热力学研究评估了吸附的可行性。研究结果表明,合成的生物复合材料对硝苯吡喃的去除率很高,OS、OS-PPY 和 OS-PAN 复合材料的去除率分别为 37.03、43.0 和 35.71(毫克/克)。这些研究结果表明,这些复合材料在去除废水中的农药方面具有广阔的潜力,有助于开发有效的环境修复策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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