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New evidence of the effect of the chemical structure of activated carbon on the activity to promote radical generation in an advanced oxidation process using hydrogen peroxide

机译:活性炭化学结构对促进氧化过程中激进生成的新探测性的新探测力

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The influence of seven commercial activated carbons (ACs) to promote hydrogen peroxide decomposition and radical generation is assessed during four operating cycles. The amount of generated hydroxyl radicals is estimated from quenching experiments using methanol as a radical scavenger. The change in chemical surface composition of ACs upon contact with hydrogen peroxide after each operating cycle is measured by Diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) and by following the change in the value of the pH of the point of zero charge (pHpzc). Results reveal that when ACs are exposed to hydrogen peroxide for extended periods, their chemical surface composition is modified, reducing the capacity of these materials to promote hydrogen peroxide decomposition, and in turn decreasing the generation of hydroxyl radicals. Moreover, DRIFTS analyses show that ACs with an appreciable content of basic surface functionalities, such as chromene-type structures, would guarantee a continuous radical generation, reducing the loss of catalytic activity. (C) 2017 Elsevier Inc. All rights reserved.
机译:在四个操作周期中评估了七种商业活性炭(ACS)促进过氧化氢分解和自由基产生的影响。利用甲醇作为自由基清除剂,从淬火实验估计产生的羟基自由基的量。通过漫反射红外傅里叶变换光谱(漂移)测量在每次操作循环后与过氧化氢接触后ACs的化学表面组成的变化通过弥漫反射率为傅里叶变换光谱(漂移),并且通过零电荷点(PHPZC)的pH值的变化。结果表明,当ACS暴露于过氧化氢时延长时,它们的化学表面组合物被修饰,降低了这些材料的能力,以促进过氧化氢分解,并且又降低了羟基的产生。此外,漂移分析表明,具有可明显含量的基本表面功能的AC,例如铬曲面结构,将保证连续产生,降低催化活性的损失。 (c)2017年Elsevier Inc.保留所有权利。

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