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首页> 外文期刊>Environmental Science and Pollution Research >Kinetic and equilibrium adsorption of two post-harvest fungicides onto copper-exchanged montmorillonite: synergic and antagonistic effects of both fungicides' presence
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Kinetic and equilibrium adsorption of two post-harvest fungicides onto copper-exchanged montmorillonite: synergic and antagonistic effects of both fungicides' presence

机译:两次收获后杀菌剂的动力学和平衡吸附在铜交换的蒙脱土:杀菌剂存在的协同和拮抗作用

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The simultaneous adsorption of both imazalil (IMZ) and thiabendazole (TBZ) fungicides in a Cu2+-exchanged Mt was studied in this work. Kinetic studies were used to determine the rate law which describes the adsorption of individual fungicides onto the adsorbent. Adsorption isotherm of individual and combined fungicides was done to evaluate synergic or antagonistic effects. The Mt-Cu material considerably improved TBZ and/or IMZ adsorption from aqueous suspensions with respect to raw Mt, leading to removal efficiencies higher than 99% after 10min of contact time for TBZ and IMZ C-i=15 and 40mg/L, respectively, when a solid dosage=1g/L was used. The adsorption sites involved were determined by a combination of X-ray diffraction (XRD) determinations and electron paramagnetic resonance (EPR), indicating that fungicides were bonded to Cu2+ cations, while the rate limiting step was the formation of coordination bonds. The adsorption mechanism proposed is that of ligand exchange between water and fungicide molecules in the metal coordination sphere. The single-crystal structure for the IMZ-Cu2+ complex indicated that four molecules were bounded to the copper centers, while two molecules of TBZ are bounded to copper explaining the higher IMZ uptake capacity for the Mt-Cu material.
机译:既抑霉唑(IMZ)和噻菌灵(TBZ)的杀真菌剂在铜离子的同时吸附 - 交换万吨在此工作中研究。动力学研究被用来确定描述个人杀菌剂的吸附在吸附剂的速率定律。从个人和组合的杀菌剂吸附等温线进行评估协同或拮抗作用。在MT-Cu材料大大改善从水性悬浮液TBZ和/或IMZ吸附相对于原始万吨,用于TBZ和IMZ次= 15和40毫克/升,分别,当接触时间10min后导致去除效率高于99%固体剂型=1克/ L使用。所涉及的吸附位点,用X射线衍射(XRD)测定的组合和电子顺磁共振(EPR)来确定,表明杀真菌剂结合以Cu2 +的阳离子,而速率限制步骤是协调键的形成。提出的吸附机理是,在金属配位层的水和杀真菌剂分子之间的配体交换的。为IMZ-Cu2 +的复合物的单晶结构表明,4个分子结合至铜中心,同时TBZ的两个分子是有界的,以铜说明更高IMZ吸收容量为MT-Cu材料。

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