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The production of radical species during aqueous ozonation of illuminated titanium dioxide suspensions

机译:照光的二氧化钛悬浮液的水溶液臭氧氧化过程中自由基物质的产生

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摘要

The combination of aqueous ozone, suspended titanium dioxide, and ultraviolet light with predominant wavelength of 254 nm was tested against other pairs of these three variables to determine if more radical species were produced. The addition of suspended and illuminated titanium dioxide did not affect the total or instantaneous transfer at the 95 percent confidence level measured in this research. Radical generation was suggested by the increased dissolved ozone decomposition with increased semiconductor concentration at pH 7.2 and the increase in ozone decomposition rate upon addition of 3.0 g/l TiO₂ to water pH 3.1. The presence of hydrogen peroxide in the suspensions may have assisted in the production of radicals by reacting with the semiconductor. The increased decomposition of glucose with 3.0 g/l TiO₂ also provided evidence that O₃/UV/TiO₂ led to the generation of more radical species.
机译:针对这三个变量的其他对,测试了臭氧水溶液,悬浮的二氧化钛和主要波长为254 nm的紫外线的组合,以确定是否产生了更多的自由基。在本研究中测得的95%置信度下,添加悬浮和照明的二氧化钛不会影响总转移或瞬时转移。在pH 7.2下,随着半导体浓度的增加,溶解的臭氧分解增加,在pH 3.1的水中加入3.0 g / l TiO 2,臭氧分解速率增加,表明产生了自由基。悬浮液中过氧化氢的存在可能有助于通过与半导体反应来产生自由基。用3.0g / l TiO 2增加的葡萄糖分解也提供了证据,表明O 3 / UV / TiO 2导致产生更多的自由基。

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