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首页> 外文期刊>RSC Advances >A facile one-pot synthesis of three-dimensional microflower birnessite (delta-MnO2) and its efficient oxidative degradation of rhodamine B
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A facile one-pot synthesis of three-dimensional microflower birnessite (delta-MnO2) and its efficient oxidative degradation of rhodamine B

机译:一种简便的一锅式立体微花水钠锰矿(δ-MnO2)合成及其对罗丹明B的有效氧化降解

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High purity birnessite (delta-MnO2) was obtained by a facile one-pot method using MnSO4 center dot H2O as a Mn resource, ethylenediamine tetraacetic acid disodium salt (EDTA-Na) as a complexing agent and oxygen in the air as an oxidant under alkaline conditions. The as-prepared birnessite presented three-dimensional microflowers composed of two-dimensional ultrathin nanosheets. Degradation results indicated that the prepared delta-MnO2 possessed excellent abilities for removal of rhodamine B (RhB). Typically, 50 mL of RhB (10 mg L-1) could be degraded completely with a 10 mg sample in 5 min without any additives such as hydrogen peroxide, peroxysulphate or any supplementary means such as microwaves or ultrasound. The samples were characterized by Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), field emission scanning electron microscopy (FESEM), and N-2 gas adsorption-desorption and thermogravimetry analysis (TGA) techniques. The mechanism of the degradation process was proposed and it was discussed that a redox reaction between birnessite and RhB occurred in an acidic environment. Clearly, the as-prepared birnessite provides great potential for the rapid degradation of dyes and organic pollutants. As it has easily available starting materials, a simple method for synthesis and undemanding degradation conditions, the as-prepared birnessite has high practical value in treating environmental pollutants.
机译:采用MnSO4中心点H2O作为锰资源,乙二胺四乙酸二钠盐(EDTA-Na)作为络合剂,空气中的氧气作为氧化剂,通过简便的一锅法获得高纯水钠锰矿(δ-MnO2)。碱性条件。制备的水钠锰矿呈现出由二维超薄纳米片组成的三维微花。降解结果表明,所制得的δ-MnO2具有优异的罗丹明B(RhB)去除能力。通常,在没有任何添加剂(例如过氧化氢,过硫酸盐)或任何辅助手段(例如微波或超声波)的情况下,用10 mg样品在5分钟内可以将50 mL RhB(10 mg L-1)完全降解。通过傅里叶变换红外光谱(FTIR),X射线衍射(XRD),X射线光电子能谱(XPS),场发射扫描电子显微镜(FESEM)以及N-2气体吸附-解吸和热重分析对样品进行表征(TGA)技术。提出了降解过程的机理,并讨论了在酸性环境下水钠锰矿与RhB之间的氧化还原反应。显然,所制备的水钠锰矿为染料和有机污染物的快速降解提供了巨大潜力。制备的水钠锰矿由于具有容易获得的起始原料,简单的合成方法和不需要的降解条件,因此在处理环境污染物方面具有很高的实用价值。

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