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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >A novel fluidized-bed-optical-fibers photocatalytic reactor (FBOFPR) and its performance
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A novel fluidized-bed-optical-fibers photocatalytic reactor (FBOFPR) and its performance

机译:新型流化床光纤光催化反应器(FBOFPR)及其性能

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摘要

The key in designing a photocatalytic reactor lies in resolving the problems of mass transfer, light transmission and light scattering. Especially, the light scattering of catalyst is very acute, which makes the accurate quantification of light irradiation difficult. In this study, a novel fluidized-bed-optical-fibers photocatalytic reactor (FBOFPR) with easy quantification of light irradiation was designed by combining fluidized-bed photocatalytic reactor with optical-fiber light source that its optical fibers were fixed by an aluminum fixed jacket for UV total reflection, and its performance was tested by using trichloroethylene (TCE) as a target pollutant. The results show that, under the condition of water vapor content at 0.25%, oxygen content at 20,8%, initial concentration ofTCE at 303.32 ppm, input light amount at 3.07 x 10~(17) s~(-1) and residence time at 1.6 s, the apparent photon quantum efficiency is 26.31%, the turnover frequency is 12.44 μmol/(g TiO2 min) and the removal efficiency is 86.66%. Compared with the conventional flat plate fluidized-bed photocatalytic reactor, FBOFPR exhibits many advantages in the aspect of effective use of photon, sufficient exertion of catalyst activity, effective removal of TCE and easy quantification of light irradiation.
机译:设计光催化反应器的关键在于解决传质,光透射和光散射的问题。特别是,催化剂的光散射非常剧烈,这使得难以精确定量光照射。在这项研究中,通过将流化床光催化反应器与光纤光源相结合,设计出一种新型的流化床光催化反应器(FBOFPR),其光辐射易于量化,其光纤由铝固定套固定。紫外全反射,其性能通过使用三氯乙烯(TCE)作为目标污染物进行了测试。结果表明,在水蒸气含量为0.25%,氧含量为20.8%,TCE初始浓度为303.32 ppm,输入光量为3.07 x 10〜(17)s〜(-1)和驻留条件下,时间为1.6 s时,表观光子量子效率为26.31%,周转频率为12.44μmol/(g TiO2 min),去除效率为86.66%。与常规平板流化床光催化反应器相比,FBOFPR在有效利用光子,充分发挥催化剂活性,有效去除三氯乙烯和有效量化光辐射方面表现出许多优势。

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