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关于纤维素对 Mg 固载羟基磷灰石吸附效能影响的空间和能量研究,以增强对毒死蜱和氧乐果农药的修复。

Steric and energetic studies on the influence of cellulose on the adsorption effectiveness of Mg trapped hydroxyapatite for enhanced remediation of chlorpyrifos and omethoate pesticides.

机构信息

College of Civil and Transportation Engineering, Shenzhen University, 3688 Nanhai Avenue, Shenzhen 518060, China.

Materials Technologies and their applications Lab, Faculty of Science, Beni-Suef University, Beni Suef City, Egypt.

出版信息

Int J Biol Macromol. 2024 Apr;265(Pt 1):130711. doi: 10.1016/j.ijbiomac.2024.130711. Epub 2024 Mar 13.

Abstract

Magnesium-trapped hydroxyapatite (Mg.HP) was hybridized with cellulose fiber to produce a bio-composite (CLF/HP) with enhanced adsorption affinities for two types of toxic pesticides (chlorpyrifos (CF) and omethoate (OM)). The enhancement influence of the hybridized cellulose on the adsorption performances of Mg.HP was illustrated based on the determined steric and energetic factors. The computed CF and OM adsorption performances of CLF/HP during the saturation phases are 279.8 mg/g and 317.9 mg/g, respectively, which are significantly higher than the determined values using Mg/HP (143.4 mg/g (CF) and 145.3 mg/g (OM)). The steric analysis demonstrates a strong impact of the hybridization process on the reactivity of the surface of the composite. While CLF/HP reflects effective uptake site densities (Nm) of 93.3 mg/g (CF) and 135.3 mg/g (OM), the estimated values for Mg.HP are 51.2 mg/g (CF) and 46.11 mg/g (OM), which explain the reported enhancement in the adsorption performances of the composite. The capacity of each uptake site to be occupied with more than one molecule (n  = 3-3.74 and n  = 2.35-3.54) suggests multimolecular uptake. The energetic factors suggested physical mechanistic processes of spontaneous and exothermic behaviors either during the uptake of CF or OM.

摘要

镁捕获羟基磷灰石(Mg.HP)与纤维素纤维杂交,产生一种具有增强吸附两种有毒农药(毒死蜱(CF)和氧乐果(OM))能力的生物复合材料(CLF/HP)。基于确定的空间和能量因素,说明了杂交纤维素对 Mg.HP 吸附性能的增强影响。在饱和阶段,CLF/HP 对 CF 和 OM 的计算吸附性能分别为 279.8 mg/g 和 317.9 mg/g,明显高于 Mg/HP 测定值(CF 为 143.4 mg/g 和 OM 为 145.3 mg/g)。空间分析表明杂交过程对复合材料表面反应性有很强的影响。虽然 CLF/HP 反映了有效吸收位密度(Nm)为 93.3 mg/g(CF)和 135.3 mg/g(OM),但对于 Mg.HP 的估计值分别为 51.2 mg/g(CF)和 46.11 mg/g(OM),这解释了报道中复合材料吸附性能的增强。每个吸收位被一个以上分子占据的能力(n=3-3.74 和 n=2.35-3.54)表明多分子吸收。能量因素表明在 CF 或 OM 的吸收过程中存在自发和放热的物理机制过程。

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