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Cyanide Containing Wastewater Treatment by Ozone Enhanced Catalytic Oxidation over Diatomite Catalysts

机译:硅藻土催化剂上臭氧增强催化氧化处理含氰废水

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Cyanide containing wastewater that discharged from gold mining process creates environmental problems due to the toxicity of cyanide. As one of the promising advanced oxidation process, catalytic oxidation with ozone is considered to be effective on the purification of cyanide. Diatomite, a natural mineral, was used as catalyst in this study. The effect of O_(3)dosage, salinity, initial cyanide concentration and initial pH condition were investigated. It was observed that the removal rate of cyanide was much higher in the catalytic oxidation with ozone process than the one in zone alone process. Alkaline condition was especially favorable for cyanide in catalytic oxidation with ozone. The ozone and catalytic oxidation with ozone were simulated by pseudo-first-order kinetics model. The apparent first-order rate constant contribution of the diatomite catalyst was 0.0757 min~(-1), and the contribution percentage was 65.77%.
机译:从金矿开采过程中排出的含氰废水由于氰化物的毒性而造成环境问题。作为有前途的高级氧化工艺之一,臭氧催化氧化被认为对氰化物的提纯有效。这项研究使用天然矿物硅藻土作为催化剂。研究了O_(3)剂量,盐度,初始氰化物浓度和初始pH条件的影响。可以看出,在臭氧催化氧化过程中,氰化物的去除率要比在单独区域法中高。碱性条件对于用臭氧催化氧化的氰化物特别有利。通过拟一级动力学模型模拟了臭氧和臭氧的催化氧化反应。硅藻土催化剂的表观一级速率常数贡献为0.0757 min〜(-1),贡献率为65.77%。

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