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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Influence of pretreatments on commercial diamond nanoparticles on the photocatalytic activity of supported gold nanoparticles under natural Sunlight irradiation
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Influence of pretreatments on commercial diamond nanoparticles on the photocatalytic activity of supported gold nanoparticles under natural Sunlight irradiation

机译:预处理对商品金刚石纳米粒子的影响在自然阳光照射下负载型金纳米粒子的光催化活性

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摘要

Fenton-treated diamond (D) nanoparticles (NPs) are suitable support of gold to promote the wet peroxidation of phenol by H2O2. One of the drawbacks of this catalyst is the need of the pretreated commercial D NPs with a large excess of H2O2 and Fe(II) salts to remove the accompanying soot matter and introduce surface —OH groups on D. This process generates a large amount of waste waters and consumes large quantities of reagents, being desirable to develop alternative pretreatments for commercial D NPs. In the present manuscript we describe that a light combustion of the soot matter in a furnace under controlled temperature and time leads to a D support that after annealing at 500 °C under hydrogen affords a modi-fled D material that is suitable as support of gold. We have found that annealing with hydrogen produces more efficient D samples than those without annealing or submitted to annealing under nitrogen. Characterization of the samples has shown that hydrogen annealing reduces surface C=O bonds to alcohols that are beneficial for anchoring gold nanoparticles. In this way, the resulting gold catalyst can set of f the disappearance of phenol in water at pH 4 with only 2.6 equiv. of H2O2 assisted by Sunlight.
机译:经过Fenton处理的金刚石(D)纳米颗粒(NPs)是金的合适载体,以促进H2O2对苯酚的湿式过氧化。该催化剂的缺点之一是需要预处理过的工业D NP,其中需要大量过量的H2O2和Fe(II)盐,以去除伴随的烟尘并在D上引入表面-OH基团。废水和消耗大量试剂,对于开发用于商业D NP的替代预处理是理想的。在本手稿中,我们描述了在受控的温度和时间下,炉中烟灰物质的轻度燃烧会产生D载体,在氢气中于500°C退火后,D载体可以作为D的改良材料,适合用作金的载体。我们已经发现,与没有进行退火或在氮气氛下进行退火的样品相比,用氢进行退火处理可产生更有效的D样品。样品的表征表明,氢退火降低了与醇的表面C = O键,这对锚定金纳米颗粒是有益的。以此方式,所得金催化剂可以仅在2.6当量下在pH 4下消除水中苯酚的消失。阳光辅助下的H2O2排放量。

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