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Recyclable Natural Magnetite Nanoparticles for Effective Degradation of Methylene Blue in Water under UV Light Irradiation

机译:UV光照射下水中亚甲基蓝化降解的可回收天然磁铁矿纳米粒子

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Among the numerous materials used for dye removal, magnetite is particularly interesting due to its ability to act as an adsorbent and a Fenton catalyst, being easily separable by application of a magnetic field and reusable. Herein, we describe a co-precipitation-based synthesis of magnetite nanoparticles (particle size = 11 nm, surface area = 147.12 m~2 g~(-1)) from iron sand and investigate their effectiveness for methylene blue (MB) degradation. The above nanoparticles could promote the decomposition of MB both in the dark (via adsorption) and under UV light irradiation (via Fenton-type degradation), exhibiting the additional advantage of recyclability. Thus, MB degradation efficiencies are 76.32, 76.08, and 68.52% for first, second, and third cycles, respectively, indicating that the prepared magnetic material is a promising recyclable catalyst for the decontamination of dye-containing wastewater. The photo Fenton reactions take to account for the reproducibility of MB degradation.
机译:在用于去除染料的许多材料中,由于其用作吸附剂和FENTON催化剂的能力,磁铁矿特别有趣,可以通过施加磁场和可重复使用容易地分离。在此,我们描述了一种基于磁铁矿纳米颗粒的共沉淀的合成(粒径= 11nm,表面积= 147.12m〜2g〜(-1)),并研究其对亚甲基蓝(MB)降解的有效性。上述纳米颗粒可以促进在黑暗(通过吸附)和UV光照射(通过芬顿型降解)下的Mb的分解,表现出可回收性的额外优点。因此,第一,第二和第三循环分别为76.32,76.08和68.52%的Mb降解效率,表明制备的磁性材料是用于含染料废水的净化的有希望的可再循环催化剂。光芬肯反应考虑MB降解的再现性。

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