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Role Of the Cathode in a Novel Photo-Electro-Chemical Catalytic Reactor

机译:阴极在新型光电化学催化反应器中的作用

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A novel photo-electro-chemical catalytic reactor with single/double-tank was designed. TiO_2/Ti thin film electrode was used as photo-anodes, graphite as cathode and a saturated calomel electrode (SCE) as the reference electrode in the reactor. The efficiency of photo-electro-chemical catalysis was enhanced because the target pollutant was degraded not only titanium dioxide electrode in anodic tank, but also hydrogen peroxide through reducing dissolved oxygen with graphite electrode in catholyte. Malachite green (MG) and crystal violet (CV) were degradated effectively in these two reactors. The degradation efficiency of the double-tank reactor is superior to that of single-tank reactor and its apparent reaction rate constant is twice or more of than that of the single-tank reactor, which was result from the higher concentration of H_2O_2 in the double-tank reactor. In the single-tank reactor, H_2O_2 generated during cathodal reaction diffused to the anode and was consumed, while it could be prevented in the double-tank reactor. Under the conditions of cathodic potential E_c at -0.6V, initial solution pH at 3.0 and initial solution concentration 30 mg·L~(-1), the catalytic degradation of MG and CV were both pseudo-first order reactions.
机译:设计了一种具有单/双罐的新型光电化学催化反应器。 TiO_2 / Ti薄膜电极用作光阳极,石墨作为阴极和饱和的Calomel电极(SCE)作为反应器中的参比电极。增强了光电化学催化的效率,因为目标污染物不仅在阳极罐中的二氧化钛电极降低,而且通过在阴极电解液中将溶解氧与石墨电极的溶解氧降低,通过过氧化氢。在这两个反应器中,孔雀石绿(Mg)和晶体紫(CV)有效地降解。双罐反应器的降解效率优于单罐反应器的效率,并且其表观反应速率常数比单罐反应器的两倍或更多,这是由双后的较高浓度的H_2O_2产生的 - 漫画反应堆。在单罐反应器中,在阴极反应期间产生的H_2O_2扩散到阳极并被消耗,同时可以防止在双罐反应器中。在阴极电位E_C的条件下,在-0.6V下,初始溶液pH为3.0和初始溶液浓度30mg·1〜(-1),催化降解Mg和Cv均为伪排序反应。

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