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首页> 外文期刊>Journal of industrial and engineering chemistry >Regeneration of activated carbons saturated with pyridine or phenol using supercritical water oxidation method enhanced with hydrogen peroxide
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Regeneration of activated carbons saturated with pyridine or phenol using supercritical water oxidation method enhanced with hydrogen peroxide

机译:使用过氧化氢增强的超临界水氧化法再生吡啶或苯酚饱和的活性炭

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摘要

While activated carbon (AC) is widely employed for treating water resources contaminated with hazardous organic compounds, regeneration of AC after saturation has been a concerning issue. Supercritical water oxidation (SCWO) in a batch reactor was used to regenerate two commercial activated carbons (CAL and COCO) saturated with pyridine or phenol. BET surface area, pore volume and pore size distribution of CAL and COCO were characterized before and after their regeneration. Decomposition of pyridine and phenol was examined at 400,450,525 °C with the presence or absence of hydrogen peroxide. The SCWO regeneration efficiency was determined from the amount of pyridine or phenol adsorbed and desorbed in successive adsorption-regeneration cycles. Effects of SCWO on adsorption capacity of CAL and COCO were experimentally investigated. With SCWO enhanced by H2O2, adsorbed organic compounds could be converted to carbon dioxide, hydrogen and nitrogen.
机译:尽管活性炭(AC)被广泛用于处理受有害有机化合物污染的水资源,但饱和后AC的再生已成为一个令人关注的问题。间歇反应器中的超临界水氧化(SCWO)用于再生两个饱和有吡啶或苯酚的商业活性炭(CAL和COCO)。表征了CAL和COCO再生前后的BET表面积,孔体积和孔径分布。在存在或不存在过氧化氢的条件下,在400,450,525°C下检查吡啶和苯酚的分解。 SCWO的再生效率由连续的吸附-再生循环中吸附和脱附的吡啶或苯酚的量确定。实验研究了SCWO对CAL和COCO吸附能力的影响。通过用H2O2增强SCWO,吸附的有机化合物可以转化为二氧化碳,氢和氮。

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