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Photoxidation of As3+ to As5+ in the presence of TiO2 under lighting conditions of a lamp and sunlight

机译:作为 3 + 作为 5 + 在灯和阳光照明条件下的 3 + / sup>作为 5 + 的光氧化

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Efforts to reduce arsenic contamination in water has led to the use of several processes of remediation. Photocatalysis remains one of the techniques yielding better results with lower material and operational costs. In the present study, we obtained the photoxidation of arsenite to arsenate in minutes. We use TiO2 as a photocatalizer with UV and solar lighting. We used an aqueous solution with As III and As V 1 mg/L concentration. The most outstanding results were obtained with 0.1 grams of TiO2 in 150 mL of the solution of As III, reaching a photoxidation to As V of 99% in 4 hours in the reactor with UV lamp. Photoxidation to As V was 94% in 6 hours with a solar lighting prototype using 2 grams of TiO2, in 3 L of a solution of As III. We verified that the As V is adsorbed in the TiO2 powder with or without the presence of light. Regardless of the same conditions, As III was not absorbed. Photoxidation in natural sunlight is somewhat slower compared to the use of a UV lamp, but the energy savings is 100%, providing a significant environmental and sustainability value to the process.
机译:减少水中砷污染的努力导致了几种修复过程。光催化仍然是具有较低材料和操作成本的效果更好的技术之一。在本研究中,我们在几分钟内获得了砷酸盐的光杂化。我们使用tio. 2 作为具有UV和太阳照明的光催化剂。我们使用具有III和v 1 mg / L浓度的水溶液。获得了最突出的结果,以0.1克TiO获得 2 在150ml作为III的溶液中,在用UV灯的反应器中达到4小时内的v为99%的v。使用2克TiO的太阳能照明原型为6小时,作为v的Photopxidation在6小时内为94% 2 ,在3升作为III的溶液中。我们核实AS V被吸附在TIO中 2 粉末有或没有光的存在。无论是否有相同的条件,因为III未被吸收。与使用UV灯相比,自然阳光中的自然阳光中的光杂化有点慢,但节能为100%,为该过程提供了重大的环境和可持续性值。

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