Caracterização de reator fotoquímico para aplicações em processos oxidativos avançados

IF 0.1 Q4 AGRICULTURE, MULTIDISCIPLINARY
A. Moreira, Thales Martins Silva, G. P. G. Freschi
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引用次数: 0

Abstract

This study broadens the understanding of photochemical processes by calculating the quantum efficiency of the Hg-MDEL lamp and discusses the environmental application of this lamp model in advanced oxidative processes. This set of information is relevant to broaden the application of Hg-MDEL in various environmental studies. Thus, a photochemical reactor composed of a microwave-fired mercury-free mercury (Hg-MDEL) lamp (MW) was evaluated from KI/KIO3 actinometric studies. The emission spectra were characterized along the UV-A, UV-B, UV-C and visible regions by means of a spectroradiometer, displaying linear correlation with the microwave power variation applied. The photochemical conversion of KI / KIO3 to I3- was up to 0.073 mmol L-1 when the KI initial concentration was 0.1 mol L-1 and 0.65 mmol L-1 when the KI concentration was 0.7 mol L-1, applying a microwave power of 600 and 400 W respectively. These results indicate that the photon emission near the reactor is more significant for higher powers, actively contributing to the formation of I3-.
用于高级氧化过程的光化学反应器的表征
本研究通过计算Hg-MDEL灯的量子效率拓宽了对光化学过程的理解,并讨论了该灯模型在高级氧化过程中的环境应用。这组资料有助于扩大hg - model在各种环境研究中的应用。因此,通过KI/KIO3光化学研究,对微波燃烧无汞汞灯(Hg-MDEL)组成的光化学反应器进行了评价。利用光谱辐射计对发射光谱沿UV-A、UV-B、UV-C和可见光区进行了表征,与微波功率变化呈线性相关。当KI初始浓度为0.1 mol L-1时,KI / KIO3光化学转化为I3-,当KI浓度为0.7 mol L-1时,KI / KIO3光化学转化为0.65 mmol L-1,微波功率分别为600和400 W。这些结果表明,在较高的功率下,反应堆附近的光子发射更为显著,积极地促进了I3-的形成。
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来源期刊
Acta Brasiliensis
Acta Brasiliensis AGRICULTURE, MULTIDISCIPLINARY-
自引率
25.00%
发文量
20
审稿时长
10 weeks
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