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Catalytic ozonation of caffeine with sepiolite: Effects of impregnation with zero-valent iron and ultrasound

机译:用海硫酸盐催化臭氧化咖啡因:浸渍与零价铁和超声的影响

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The study is about the oxidative destruction and mineralization of caffeine by catalytic ozonation using sepiolite, which is a low-cost natural clay mineral found abundantly in Anatolia. The results showed that while ozonation alone at pH 6.0 (the natural pH of the test solution) provided 72% caffeine decay and 18% carbon mineralization during 10-min and 60-min reaction, respectively; catalytic ozonation with sepiolite provided 96% conversion and 30% mineralization during equivalent pH and reaction times. The activity of the catalyst was further improved by immobilization of zero-valent iron (ZVI) on its surface to produce a nanocomposite (ZVI/SEP) with a massive surface area and a much more reactive surface. Integration of the process with high-frequency ultrasound (US) was found to further enhance the rate of caffeine degradation and the degree of carbon mineralization via the unique properties of ultrasound for enhancing the rate of mass transfer to the catalyst surface and the generation of hydroxyl radicals (HO) via thermal fragmentation of water molecules in the collapsing cavity bubbles. Maximum process efficiency was obtained under the following optimized conditions: pH = 6.0, O_3 (aq.) = 4 mg L~(-1), SEP/ZVI = 1.0 g L~(-1) US frequency = 577 kHz, t = 5-min and 60-min for 100% caffeine and 57% TOC decay, respectively. The nanocomposite was also highly stable, for it was used consecutively in four cycles without significant loss in activity.
机译:该研究是关于使用Sepiolite催化臭氧化的含咖啡因的氧化破坏和矿化,这是一种低成本的天然粘土矿物在阿纳托利亚发现。结果表明,虽然在pH6.0(试验溶液的天然pH值)中单独臭氧处理,但在10分钟和60分钟的反应中分别提供72%的咖啡因衰减和18%的碳矿化;催化臭氧加入与海泡石在等效pH和反应时间期间提供96%的转化率和30%的矿化。通过在其表面上固定零价铁(ZVI)来进一步改善催化剂的活性,以产生具有大规模表面积和更多样的反应性表面的纳米复合材料(ZVI / SEP)。发现使用高频超声(美国)的过程的整合,通过超声的独特性能进一步增强咖啡因降解和碳矿化程度,以提高催化剂表面的质量传递速率和羟基的产生通过塌陷腔气泡中的水分子的热碎片(HO)通过热碎片。在以下优化条件下获得最大工艺效率:pH = 6.0,O_3(AQ。)= 4mg L〜(-1),SEP / ZVI = 1.0 G L〜(-1)US频率= 577 kHz,T =为100%咖啡因5分钟和60分钟,分别为57%TOC衰减。纳米复合材料也高度稳定,因为它在四个循环中连续使用,无需显着损失。

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