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Catalytic Oxidative Treatment of Diluted Black Liquor at Mild Conditions Using Copper Oxide/Cerium Oxide Catalyst

机译:氧化铜/氧化铈催化剂在温和条件下催化氧化处理稀黑液

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Wet-air oxidation of diluted black liquor (chemical oxygen demand [COD] approximately 3250 to 14 500 mg/L) was performed at mild operating conditions (temperature = 388 to 423 K and total pressure = 0.6 MPa) in the presence of heterogeneous 60% copper oxide (CuO)/ 40% cerium oxide (CeO_2) catalyst. Maximum COD reduction of 77.3% was obtained at 423 K at pH 3.0, which was marginally higher than that obtained at 413 K temperature (77.1%). In the acidic environment (pH ≤3), most of the COD was removed in the form of settleable solids during the transient heating of the wastewater from room temperature to the desired one. The solid residue obtained after the reaction has a heating value of 20.1 MJ/kg, which is comparable with that of Indian coal. Thermal degradation kinetic determination suggested that thermal characteristics of the solid residue are well represented by a power law model with Agarwal and Sivasubramanian approximation (Safi et al., 2004).
机译:在非均相60的存在下,在温和的操作条件(温度= 388至423 K,总压力= 0.6 MPa)下进行稀黑液的湿空气氧化(化学需氧量[COD]约为3250至14500 mg / L)。 %的氧化铜(CuO)/ 40%的氧化铈(CeO_2)催化剂。在pH 3.0下于423 K下获得的最大COD降低为77.3%,略高于在413 K温度下获得的最大COD降低(77.1%)。在酸性环境(pH≤3)中,在将废水从室温瞬时加热到所需温度的过程中,大部分COD以可沉降固体的形式除去。反应后获得的固体残留物的发热量为20.1 MJ / kg,与印度煤相当。热降解动力学测定表明,固体残渣的热特性可以很好地用Agarwal和Sivasubramanian近似的幂定律模型表示(Safi等,2004)。

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