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Photoinduced redox reactions between colloidal manganese dioxide and some organic compounds of environmental importance

机译:胶态二氧化锰与某些对环境具有重要意义的有机化合物之间的光诱导氧化还原反应

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Numerous organic compounds of environmental importance, i.e., phenol, citric, tartaric, and oxalic acids, proved to promote or accelerate reductive dissolution of colloidal manganese dioxide upon irradiation. This is accounted for the formation of surface-located charge-transfer complexes between the MnO2 particulates and the organic electron donors. From the dependences of the rate of the photoassisted and thermal dissolution on the concentration of the organic compounds, the equilibrium constants for the formation of these complexes have been determined in the case of phenol, resorcinol, citrate, and tartaric acid. The quantum yields for these photoinduced reactions (at λ ir = 365 nm), however, do not show any correlation with the values of the corresponding equilibrium constants, although adsorption is prerequisite for the efficient reductive dissolution of MnO2. The changes in pH markedly affect the rate of this process, indicating that protonation of both the electron donors and the surface of the MnO2 particulates may play significant roles in these systems. The results of experiments carried out in manganese dioxide excess suggest that total mineralization of organic electron donors is strongly hindered by the disadvantageous adsorption properties of the primary redox products.
机译:证明对环境具有重要意义的多种有机化合物,即苯酚,柠檬酸,酒石酸和草酸,在辐照后可促进或加速胶体二氧化锰的还原溶解。这是由于MnO2 颗粒和有机电子给体之间形成了表面电荷转移配合物。根据光辅助和热溶解速率对有机化合物浓度的依赖性,在苯酚,间苯二酚,柠檬酸盐和酒石酸的情况下,已确定了形成这些络合物的平衡常数。尽管吸附是有效还原溶解MnO2 的先决条件,但是这些光诱导反应的量子产率(在λir = 365 nm时)与相应的平衡常数没有任何关系。 >。 pH的变化显着影响该过程的速率,表明电子给体和MnO2 颗粒表面的质子化可能在这些系统中起重要作用。在过量的二氧化锰中进行的实验结果表明,主要的氧化还原产物的不利吸附性能严重阻碍了有机电子给体的总矿化。

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