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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Spent Coffee Grounds-Templated Magnetic Nanocatalysts for Mild Oxidations
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Spent Coffee Grounds-Templated Magnetic Nanocatalysts for Mild Oxidations

机译:花咖啡浇筑 - 模板化磁性纳米催化剂用于温和氧化

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摘要

Environmental harmful effects of spent coffee in stream waters pushed our research group to find new applications for this waste material. A new family of magnetic nanocatalysts was synthesized based on spent coffee grounds and ammonium iron(III) citrate as iron precursor via solvent-free mechanochemical milling followed by calcination at different temperatures. X-ray diffraction data together with magnetic susceptibility measurements showed the unique properties of these materials, including the unprecedented presence of a maghemite phase at calcination temperatures as high as 800 degrees C. The work is completed with the help of a multiethnic characterization approach based on data obtained by N-2 physisorption, transmission electronic microscopy (TEM)-high-resolution TEM, X-ray photoelectronic spectroscopy, and thermogravimetric analysis. Considering the advantages related to magnetic features, mostly associated with the simple recovery and reuse, materials were tested in the catalytic oxidation of isoeugenol towards vanillin under both, conventional heating and microwave-assisted conditions. Remarkably, a clear enhancement in the catalytic behavior was observed by using microwave irradiation. The results evidenced that hematite content could be a decisive factor to control the activity and selectivity of the reaction.
机译:废咖啡在流水中的环境有害影响推动了我们的研究组,找到了这种废料的新应用。基于废咖啡渣和铁(III)作为铁前体,通过溶剂的机械化学铣削,合成新的磁性纳米催化剂系列新的磁性纳米催化剂的新系列。随后在不同温度下进行煅烧。 X射线衍射数据与磁敏感度测量一起显示出这些材料的独特性质,包括在煅烧温度下的磁性相位的前所未有的存在,高达800℃。根据基于的不同民族特征方法完成工作。通过N-2物理学,传输电子显微镜(TEM) - 高分辨率TEM,X射线光电光谱和热重分析获得的数据。考虑到与磁性相关的优点,主要与简单的回收和再利用相关,在常规加热和微波辅助条件下,在异黄烯醇的催化氧化中测试材料。值得注意的是,通过使用微波辐射观察到催化行为的明显增强。结果证明了赤铁矿含量可能是控制反应活性和选择性的决定性因素。

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