用于高效去除水生环境中不同污染物的海藻酸甲酯/圣巴巴拉无定形-15/氧化铁纳米复合材料

Zeinab Amiri-Khamakani , Mohammad Mehdi Salehi , Fereshte Hassanzadeh-Afruzi , Maryam Mohammadi , Ali Maleki , Ehsan Nazarzadeh Zare
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摘要

一种名为 "海藻酸甲酯@SBA-15/IONP "的新型环保介孔磁性纳米复合材料(MMNCs)已被制成用于净化水污染物的纳米吸附剂系统。生产过程包括多个阶段,首先是利用水热法合成圣巴巴拉无定形 15(SBA-15)。随后,通过原位共沉积法在 SBA-15 上制备出氧化铁纳米粒子(IONP)。实验研究了影响铅(II)离子(Pb2+)、亚甲基蓝(MB)和毒死蜱(CPS)吸附过程的各种因素。此外,还对海藻酸甲酯@SBA-15/IMP MMNCs 系统进行了 Langmuir 和 Freundlich 等温线模型、两种动力学模型(假一阶(PFO)和假二阶(PSO))以及热力学研究。具有 PSO 动力学的 Freundlich 等温线模型描述了 Pb2+、MB 和 CPS 在海藻酸甲酯@SBA-15/IONP MMNCs 中的吸附行为,热力学参数显示了吸附的自发和内热性质。
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Methyl alginate/Santa Barbara amorphous-15/iron oxide nanocomposite for efficient removal of different pollutants from aquatic environments

A new eco-friendly mesoporous magnetic nanocomposite (MMNCs) known as " methyl alginate@SBA-15/IONP " has been created as a nano-adsorbent system for purifying water contaminants. The production process consisted of multiple stages, commencing with the synthesis of Santa Barbara Amorphous-15 (SBA-15) utilizing the hydrothermal approach. Subsequently, Iron oxide nanoparticle (IONP) was prepared onto SBA-15 through an in-situ co-deposition method. Experimental studies were carried out on various factors affecting the adsorption process of Lead (II) ion (Pb2+), Methylene Blue (MB), and Chlorpyrifos (CPS). Furthermore, Langmuir and Freundlich isotherm models, two kinetic models (pseudo-first-order (PFO) and pseudo-second-order (PSO)), and thermodynamic investigations were conducted for the methyl alginate@SBA-15/IONP MMNCs system. Freundlich isotherm model with PSO kinetics describes the adsorption behavior and thermodynamic parameters show the spontaneous and endothermic nature of adsorption of Pb2+, MB, and CPS in methyl alginate @ SBA-15/IONP MMNCs.

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