School of Chemistry, Damghan University, Damghan, 36716-45667, Iran.
School of Chemistry, Damghan University, Damghan, 36716-45667, Iran.
Environ Res. 2024 Jul 1;252(Pt 2):118893. doi: 10.1016/j.envres.2024.118893. Epub 2024 Apr 9.
Pesticides can have harmful impacts on the environment and living organisms. Thus, removing them from polluted water is crucial. In this study, a bionanocomposite of carboxymethyl tragacanth-grafted-poly(3-aminophenol)/zinc oxide@iron oxide (CMT-g-P3AP/ZnO@FeO) synthesized by in situ copolymerization as an efficient adsorbent to eliminate the acetamiprid pesticide from polluted water. The CMT-g-P3AP/ZnO@FeO magnetic nanocomposite was analyzed utilizing various techniques including FTIR, EDX, FESEM, XRD, BET, CHNSO, and TGA. The results displayed that the resulting nanocomposite with maximum adsorption capacity (Q) successfully removed the acetamiprid pesticide from polluted water under optimal conditions such as pH of 7.00, 5.00 mg of adsorbent, 20.0 min duration, and 400 mg/L acetamiprid concentration. According to the linear Langmuir isotherm, the Q of the biosorbent was 833 mg/g. The experimental adsorption data fitted well with Temkin's nonlinear isotherm model. The adsorption kinetic data were closely related to the Weber-Morris intraparticle diffusion nonlinear model. After three repetitive cycles, CMT-g-P3AP/ZnO@FeO can be outstandingly renewed and recycled without significant reduction in its adsorption efficacy, as evidenced by the adsorption-desorption experiments. In addition, the CMT-g-P3AP/ZnO@FeO displayed the good antibacterial activity against E. coli and S. aureus.
农药会对环境和生物产生有害影响。因此,从受污染的水中去除农药至关重要。在这项研究中,通过原位共聚合成了一种接枝羧甲基胍基-聚(3-氨基酚)/氧化锌@氧化铁的生物纳米复合材料(CMT-g-P3AP/ZnO@FeO),作为一种有效的吸附剂,可从受污染的水中去除乙虫脒农药。通过各种技术对 CMT-g-P3AP/ZnO@FeO 磁性纳米复合材料进行了分析,包括 FTIR、EDX、FESEM、XRD、BET、CHNSO 和 TGA。结果表明,在所研究的条件下,最大吸附容量(Q)的纳米复合材料成功地从受污染的水中去除了乙虫脒农药,这些条件包括 pH 值为 7.00、5.00mg 吸附剂、20.0min 作用时间和 400mg/L 乙虫脒浓度。根据线性 Langmuir 等温线,生物吸附剂的 Q 值为 833mg/g。实验吸附数据与 Temkin 的非线性等温模型拟合良好。吸附动力学数据与 Weber-Morris 内扩散非线性模型密切相关。经过三次重复循环后,CMT-g-P3AP/ZnO@FeO 可以出色地再生和回收,而不会显著降低其吸附效率,这可以从吸附-解吸实验中得到证明。此外,CMT-g-P3AP/ZnO@FeO 对大肠杆菌和金黄色葡萄球菌表现出良好的抗菌活性。