首页> 外文会议>International Conference on Waste Management, Sep 4-6, 2002, Cadiz, Spain >Photocatalysis of methomyl using concentrating solar collector and ultraviolet light
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Photocatalysis of methomyl using concentrating solar collector and ultraviolet light

机译:聚光太阳能集热器和紫外光对灭多威的光催化作用

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The photocatalytic oxidation of methomyl, using TiO_2 suspensions under solar radiation and ultraviolet light, has been studied at pilot scale at photodegradation laboratory of University of Antioquia (Medellin, Colombia). Two different reactor designs were tested: a low-concentrating radiation system, Solar-Parabolic-Concentrator Reactor (SPCR), facing south and inclined 6 degrees (geographic position of Medellin: 6 degrees north latitude), and an ultraviolet light system (ULS). Both systems were built in University of Antioquia. In Colombia, methomyl is used as a foliar spray and controls many insects on field crops, fruit crops, and vegetables. Methomyl was dissolved in water to required mg/L levels in a reservoir tank. In both cases, 1 g/L of Lannate (formulation with an active compound: methomyl) was used. TiO_2, in concentrations between 50 mg/L and 250 mg/L, and H_2O_2, between 1 mL (30%)/L and 3 mL (30%)/L, were used. Aliquots of the water samples were taken at different times of irradiation and total organic carbon (TOC) was analyzed. In some experiments, air was used, without H_2O_2, which permitted to compare oxidative efficiency of two oxidant agents (O_2 and H_2O_2); both are very used in photocatalytic processes. 79% of mineralization was obtained using SPCR and 52% using ULS.
机译:在安蒂奥基亚大学(哥伦比亚麦德林)的光降解实验室,以中试规模研究了使用TiO_2悬浮液在太阳辐射和紫外光下对甲hom基的光催化氧化。测试了两种不同的反应堆设计:低浓度辐射系统,朝南倾斜6度(麦德林的地理位置:北纬6度)的太阳能-抛物面聚光反应堆(SPCR)和紫外线系统(ULS) 。两种系统均建于安蒂奥基亚大学。在哥伦比亚,灭多威用作叶面喷雾剂,可以控制田间作物,水果作物和蔬菜上的许多昆虫。在储罐中将灭多威溶于水中至所需的mg / L水平。在这两种情况下,均使用1 g / L的Lannate(具有活性化合物的配方:灭多威)。使用浓度为50 mg / L至250 mg / L的TiO_2和浓度为1 mL(30%)/ L至3 mL(30%)/ L的H_2O_2。在不同的照射时间取等分的水样,并分析总有机碳(TOC)。在某些实验中,使用没有H_2O_2的空气,可以比较两种氧化剂(O_2和H_2O_2)的氧化效率。两者都非常用于光催化过程。使用SPCR获得79%的矿化度,使用ULS获得52%的矿化度。

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