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Degradation of Aromatic Nitro-compound by Photocatalytic-Fenton-like Reaction

机译:类Fenton光催化反应降解芳香族硝基化合物

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Industrial wastewater with aromatic nitro-compound has high toxic effects and physiological toxicity. Simplex biochemical treatment technology is impossible to completely achieve degradation of the aromatic nitro-compound, and the application cost of only Fenton reagent is too high, therefore, the wastewater treatment technology by combination of biochemical method and Fenton reagent has drawn more and more attention in recent years. Fenton-like can maintain a suitable neural or mild alkali operating environment for the degradation of aromatic nitrocompound, and combination with UV light and Fenton's reagent can create a synergistic effect. Meanwhile, photocatalytic can produce hydrogen peroxide, which can avoid not only the excessive consumption of hydrogen peroxide, but also the impact of the residual hydrogen peroxide on coupling biochemical system. For this reason, the united technology of Photo-Fenton-like and photochemical catalysis, which can produce hydrogen peroxide, can be expected to create a low-cost degradation of aromatic nitrocompound by coupling of Fenton and biochemical processes.
机译:具有芳香族硝基化合物的工业废水具有很高的毒性作用和生理毒性。单纯的生化处理技术不可能完全实现芳香族硝基化合物的降解,仅芬顿试剂的应用成本过高,因此,生化法与芬顿试剂结合的废水处理技术越来越受到关注。最近几年。类Fenton可以维持适当的神经或温和的碱性操作环境,以降解芳香族硝基化合物,并且与UV光和Fenton试剂组合可以产生协同作用。同时,光催化可以产生过氧化氢,不仅可以避免过氧化氢的过量消耗,而且可以避免残留的过氧化氢对偶联生化系统的影响。由于这个原因,可以期望通过产生光过氧化氢的类似光芬顿和光化学催化的联合技术,通过芬顿和生化过程的结合,以低成本降解芳香族硝基化合物。

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