首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Application of Porous Nickel-Coated TiO2 for the Photocatalytic Degradation of Aqueous Quinoline in an Internal Airlift Loop Reactor
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Application of Porous Nickel-Coated TiO2 for the Photocatalytic Degradation of Aqueous Quinoline in an Internal Airlift Loop Reactor

机译:多孔镍包覆TiO2在内部气举回路反应器中光催化降解喹啉水溶液中的应用

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摘要

P25 film, prepared by a facile dip-coating method without any binder, was further developed in a recirculating reactor for quinoline removal from synthetic wastewater. Macroporous foam Ni, which has an open three-dimensional network structure, was utilized as a substrate to make good use of UV rays. Field emission scanning electron microscopy and X-ray diffraction analysis showed that the coated/calcinated P25 films consisted of two crystal phases, and had a number of uniform microcracks on the surface. The effects of initial quinoline concentration, light intensity, reaction temperature, aeration, and initial pH were studied. Increased reaction time, light intensity, environmental temperature, and gas aeration were found to significantly improve the quinoline removal efficiency. The aeration effect of oxygen dependency on the quinoline degradation had the trend pure oxygen > air > no gas > pure nitrogen with free O2. The solution pH crucially affected quinoline photodegradation; the high electrostatic adsorption of quinoline molecules on the TiO2 surface was strongly pH dependent. 2-Pyridine-carboxaldehyde, 3-pyridinecarboxaldehyde, and 2(1H)-quinolinone were identified as the major intermediates of quinoline degradation. Based on these intermediates, a primary degradation mechanism was proposed. This reusable P25 film benefits the photodegradation of water contaminants and has potential in other various applications.
机译:通过简便的浸涂法制备的不含任何粘合剂的P25膜在循环反应器中进一步开发,用于从合成废水中去除喹啉。具有开放的三维网络结构的大孔泡沫镍被用作基材,以充分利用紫外线。场发射扫描电子显微镜和X射线衍射分析表明,涂覆/煅烧的P25膜由两个晶相组成,并且在表面上具有许多均匀的微裂纹。研究了初始喹啉浓度,光强度,反应温度,曝气和初始pH的影响。发现增加反应时间,光强度,环境温度和充气可显着提高喹啉的去除效率。氧气对喹啉降解的曝气作用具有以下趋势:纯氧>空气>无气体>含游离氧的纯氮。溶液的pH值严重影响喹啉的光降解;喹啉分子在TiO2表面上的高静电吸附强烈依赖于pH。 2-吡啶-甲醛,3-吡啶-甲醛和2(1H)-喹啉酮被确定为喹啉降解的主要中间体。基于这些中间体,提出了一种主要的降解机理。这种可重复使用的P25薄膜有利于水污染物的光降解,并在其他各种应用中具有潜力。

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