Investigating the Adsorption Kinetics of Dimethoate, Malathion and Chlorpyrifos on Cellulose-Derived Activated Carbons: Understanding the Influence of Physicochemical Properties

C Pub Date : 2023-11-03 DOI:10.3390/c9040103
Tamara Lazarević-Pašti, Ana Jocić, Vedran Milanković, Tamara Tasić, Katarina Batalović, Stefan Breitenbach, Christoph Unterweger, Christian Fürst, Igor A. Pašti
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Abstract

In light of the escalating environmental concerns regarding pesticide accumulation, it is imperative to devise efficient strategies for their removal. Among the various options, activated carbons have emerged as promising candidates for adsorptive pesticide removal due to their many advantages, such as large surface area, well-developed porosity, and cost-effectiveness. However, the intricate relationship between the properties of these materials and their performance in pesticide adsorption remains largely unexplored. This study primarily focuses on examining the adsorption kinetics of three organophosphate pesticides: dimethoate, malathion (aliphatic), and chlorpyrifos (aromatic), using a range of cellulose-based activated carbon fibers with diverse specific surface areas, pore size distributions, and elemental compositions. By employing sophisticated data analysis tools, principal component analysis, and semi-empirical quantum chemical calculations, this study uncovers the importance of these distinct properties in efficiently removing structurally diverse pesticides. The results of the adsorption experiments suggested that these processes can be described using a pseudo-second-order kinetic model, which is confirmed via multiple linear regression. The obtained data suggest that the most effective carbon material for pesticide removal should have a pore diameter of approximately 4 nm, low oxygen content, a unimodal pore size distribution, and a high presence of sp2 domains. The insights from this research have the potential to guide the development of improved adsorbents and facilitate the rational selection of adsorbents tailored to specific pollutants based on their physicochemical properties and the pollutants’ chemical structure. By shedding light on the vital connection between adsorbent properties and performance, our findings significantly advance sustainable and effective pesticide removal, thereby fostering a cleaner and healthier environment.
纤维素基活性炭对乐果、马拉硫磷和毒死蜱的吸附动力学研究及其理化性质的影响
鉴于农药积累引起的日益严重的环境问题,制定有效的农药清除策略势在必行。在各种选择中,活性炭因其具有表面积大、孔隙度好、成本效益高等优点而成为吸附式农药去除的有希望的候选者。然而,这些材料的性质与其农药吸附性能之间的复杂关系在很大程度上仍未被探索。本研究主要研究了三种有机磷农药的吸附动力学:乐果、马拉硫磷(脂肪族)和毒死蜱(芳香族),使用一系列具有不同比表面积、孔径分布和元素组成的纤维素基活性炭纤维。通过采用复杂的数据分析工具、主成分分析和半经验量子化学计算,本研究揭示了这些不同性质在有效去除结构多样化农药中的重要性。吸附实验结果表明,这些过程可以用拟二阶动力学模型来描述,并通过多元线性回归得到了证实。得到的数据表明,最有效的去除农药的碳材料应具有孔径约为4 nm,低氧含量,单峰孔径分布和高sp2结构域的存在。本研究的见解有可能指导改进吸附剂的发展,并促进根据其物理化学性质和污染物的化学结构合理选择适合特定污染物的吸附剂。通过阐明吸附剂特性和性能之间的重要联系,我们的研究结果显著促进了可持续和有效的农药去除,从而促进了更清洁、更健康的环境。
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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