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基于槐豆胶的水凝胶嵌入磁性氧化铁纳米粒子纳米复合材料:用于环境和能源应用的先进材料。

Locust Bean gum-based hydrogels embedded magnetic iron oxide nanoparticles nanocomposite: Advanced materials for environmental and energy applications.

机构信息

Department of Chemistry, College of Natural Science, Yeungnam University, 280 Daehak-Ro, Gyeongsan, Gyeongbuk, 38541, Republic of Korea.

Department of Chemistry, College of Natural Science, Yeungnam University, 280 Daehak-Ro, Gyeongsan, Gyeongbuk, 38541, Republic of Korea.

出版信息

Environ Res. 2022 Nov;214(Pt 3):114000. doi: 10.1016/j.envres.2022.114000. Epub 2022 Aug 7.

DOI:10.1016/j.envres.2022.114000
PMID:35948150
Abstract

This paper reports a simple method of designing and synthesizing magnetic iron oxide (IO) integrated locust bean gum-cl-polyacrylonitrile hydrogel nanocomposites (LBG-cl-PAN/IONP) by in situ mineralization of iron ions in a hydrogel matrix. A two-step gel crosslink method followed by co-precipitation method was used to prepare these novel hydrogels embedded with magnetic iron oxide nanoparticles. The LBG-cl-PAN/IONP hydrogel nanocomposite (HNC) were tested in batch adsorption experiments for their ability to remove a cationic dyes, methylene blue (MB) & Methyl violet (MV), from aqueous solution. In order to analyze the LBG-cl-PAN/IONP HNC, FTIR, XRD, XPS, VSM, TEM, and EDX techniques were applied. Numerous operating parameters were studied, including the amount of adsorbent, the contact time, pH, temperature, the dye concentration, and the coexisting ion concentration. According to the Langmuir isotherm model, MB and MV had maximum monolayer adsorptive capacities of 1250 and 1111 mg/g, respectively. LBG-cl-PAN/IONP HNC controlled IONP oxidation as well as sustained adsorptive removal over a wide pH range (7-10). The key mechanism of adsorption consisted of electrostatic interaction and ion exchange. For successful use in successive cycles after regeneration using HNO as eluent, the LBG-cl-PAN/IONP HNC can easily be reused. As a material, the LBG-cl-PAN/IONP HNC is a promising sorbent or composite material for removing toxic dyes from water, and therefore can be applied to enhance water and wastewater treatment technology. Additionally, we have briefly evaluated LBG-cl-PAN/IONP HNC for antibacterial and supercapacitor applications. According to our knowledge, this is the first report describing the use of LBG-cl-PAN/IONP HNC multifunctional efficacy as an excellent sorbent, antibacterial and electrochemical supercapacitor applications.

摘要

本文报道了一种通过在水凝胶基质中就地矿化铁离子来设计和合成磁性氧化铁(IO)与槐豆胶-cl-聚丙烯腈水凝胶纳米复合材料(LBG-cl-PAN/IONP)的简单方法。采用两步凝胶交联法和共沉淀法制备了这些新型水凝胶,其中嵌入了磁性氧化铁纳米粒子。将 LBG-cl-PAN/IONP 水凝胶纳米复合材料(HNC)用于批式吸附实验,以研究其从水溶液中去除阳离子染料亚甲基蓝(MB)和甲基紫(MV)的能力。为了分析 LBG-cl-PAN/IONP HNC,应用了 FTIR、XRD、XPS、VSM、TEM 和 EDX 技术。研究了许多操作参数,包括吸附剂的用量、接触时间、pH 值、温度、染料浓度和共存离子浓度。根据 Langmuir 等温线模型,MB 和 MV 的最大单层吸附容量分别为 1250 和 1111 mg/g。LBG-cl-PAN/IONP HNC 控制 IONP 氧化并在较宽的 pH 范围内(7-10)持续吸附去除。吸附的关键机制包括静电相互作用和离子交换。使用 HNO3 作为洗脱剂进行再生后,LBG-cl-PAN/IONP HNC 可成功用于连续循环,易于重复使用。作为一种材料,LBG-cl-PAN/IONP HNC 是一种从水中去除有毒染料的有前途的吸附剂或复合材料,因此可应用于增强水和废水处理技术。此外,我们还简要评估了 LBG-cl-PAN/IONP HNC 在抗菌和超级电容器应用方面的性能。据我们所知,这是首次报道 LBG-cl-PAN/IONP HNC 多功能功效作为一种优异的吸附剂、抗菌和电化学超级电容器应用的报告。

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