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首页> 外文期刊>Chemical engineering journal >Optical properties of goethite catalyst for heterogeneous photo-Fenton reactions Comparison with a titanium dioxide catalyst
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Optical properties of goethite catalyst for heterogeneous photo-Fenton reactions Comparison with a titanium dioxide catalyst

机译:针铁矿催化剂在光均相芬顿反应中的光学性质与二氧化钛催化剂的比较

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摘要

Optical properties of solid catalysts needed for a rigorous modeling of heterogeneous photo-Fenton reaction kinetics and the ultimate reactor design have not been studied so far. Without these data, quantitative information concerning the influence of the radiation field in the process performance is almost impossible. These reactions are still under the first stages of their studies, and most of the effort has been aimed at elucidate yields, tentative mechanisms, the optimum operating pH and ways to reduce iron ions leaching to the aqueous solution. This work reports the values of above-mentioned parameters precisely calculated, resorting to specially designed spectrophotometer measurements coupled with the solution of the radiative transfer equation (RTE). Goethite, a natural occurring ferric oxide, was studied to obtain the values of the radiation linear volumetric absorption and scattering coefficients, as well as the phase function for scattering, some of them as a function of mass composition, and all of them as a function of the wavelength range between 310 and 500 nm. The results indicate that, in addition to its demonstrated ability to degrade effectively many contaminants, its optical properties exhibit very low absorption and scattering properties. This outcome improves its potentiality for applications in large-scale reactors, because the resulting useful optical path length will be significantly large. Specifically, these results are compared with a typical photocatalytic substance, such as titanium dioxide to remark the differences.
机译:到目前为止,尚未对用于严格建模非均相光芬顿反应动力学和最终反应器设计所需的固体催化剂的光学性质进行研究。没有这些数据,关于辐射场对工艺性能影响的定量信息几乎是不可能的。这些反应仍处于研究的第一阶段,并且大多数努力都旨在阐明产量,试验性机理,最佳操作pH值以及减少铁离子浸出到水溶液中的方法。这项工作报告了上述精确计算出的参数值,这是通过专门设计的分光光度计测量结果以及辐射传递方程(RTE)的解算得出的。研究了针铁矿(一种天然存在的三氧化二铁)以获得辐射线体积吸收和散射系数的值,以及散射的相位函数,其中一些是质量组成的函数,而所有都是质量的函数波长范围在310至500 nm之间。结果表明,除了已证明具有有效降解许多污染物的能力外,其光学性能还显示出非常低的吸收和散射性能。该结果提高了其在大规模反应堆中应用的潜力,因为所产生的有用光程长度将非常大。具体而言,将这些结果与典型的光催化物质(例如二氧化钛)进行比较,以说明差异。

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