人体净化
阳光
辐射能
污染物
化学
太阳能
辐照
辐射
热的
辐射传输
过氧化氢
传质
光化学
环境科学
环境化学
热力学
废物管理
光学
工程类
有机化学
核物理学
物理
生物
色谱法
生态学
作者
Jorgelina Farías,Enrique Albizzati,Orlando M. Alfano
摘要
A theoretical and experimental study of a new pilot-plant solar reactor for the photo-Fenton treatment of waters containing toxic organic compounds is presented. This hybrid unit was designed and built to capture thermal and photochemical solar radiation, yielding higher degradation rates of a model pollutant. The mass and thermal energy balances and the radiative transfer equation are solved to compute the pollutant and hydrogen peroxide concentrations and the reaction temperature as a function of time. The spectral UV/visible and broadband solar radiation incident on the reactor window are estimated from a computational code: the Simple Model for the Atmospheric Radiative Transfer of Sunshine (SMARTS2) program. Under irradiated runs, an experimental temperature increase up to 25 °C is reached. Also, for a reaction time of 180 min and a relatively low iron concentration, the combined effect of UV/visible and thermal sunlight is able to degrade 98.2% of the initial pollutant concentration.
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