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A batch LED reactor for the photocataiytic degradation of phenol

机译:间歇式LED反应器对苯酚的光催化降解

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Photocataiytic degradation of phenol by titanium dioxide illuminated by one light emitting diode (LED) in a batch photocataiytic reactor is reported in this paper. The effect of catalyst loading, catalyst type, phenol-hydrogen peroxide ratio, pH, initial phenol concentration and irradiance by applying pulse width modulation (PWM) was studied. The effect of the beam width on photocataiytic degradation of phenol is also included in this paper as is the use of different type of reflectors outside the reactor. With both an LED beam width of 120 and optimal chemical conditions of lOppm phenol concentration with a hydrogen peroxide-phenol molar ratio of 100 and pH of 4.8, a degradation rate of 42% was achieved after 4h. Decreasing the beam width to 40° raised degradation to 87%. In order to study the irradiance distribution and its effect on the reactor performance, experiments were conducted incorporating various catalysts loading, reactor heights and beam widths. The irradiance was measured for different amount of catalyst loading ranging from 0.17 to l.8 gL~(-1)at different reactor heights. The results are compared with optimal catalyst loading measurement to assess the correlation between phenol degradation and irradiance distribution. The UV LED in combination with titanium dioxide is appropriate for water treatment to degrade organic pollutants at low concentration.
机译:本文报道了在间歇式光催化反应器中一个发光二极管(LED)照射的二氧化钛对苯酚的光催化降解作用。通过应用脉冲宽度调制(PWM),研究了催化剂负载量,催化剂类型,苯酚-过氧化氢比,pH,初始苯酚浓度和辐照度的影响。光束宽度对苯酚的光催化降解的影响也包括在本文中,因为在反应器外部使用了不同类型的反射器。在LED光束宽度为120且最佳化学条件为10ppm苯酚浓度,过氧化氢与苯酚摩尔比为100,pH为4.8的情况下,经过4h,降​​解率达到42%。将光束宽度减小到40°可使劣化降低到87%。为了研究辐照度分布及其对反应器性能的影响,进行了各种催化剂负载量,反应器高度和束宽的实验。测量了在不同反应器高度下,催化剂负载量范围从0.17至1.8 gL〜(-1)的辐照度。将结果与最佳催化剂负载量测量进行比较,以评估苯酚降解与辐照度分布之间的相关性。 UV LED与二氧化钛的结合适用于水处理,以降低低浓度的有机污染物。

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