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Optimization of a Combined Approach for the Treatment of Carbide Slurry and Capture of CO_2

机译:碳化物淤浆和CO_2捕集组合方法的优化

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The aim of this study is to evaluate the potential use of electrocoagulation in the treatment of carbide slurry, a wastewater generated during the production of acetylene, and in the capture of carbon dioxide. An electrochemical batch reactor was used to carry out several experiments at different current densities, ranging between 140-290 A/m~2. Pure air and a mixture of 10% of carbon dioxide in air were injected into the reactor system to ensure good mixing and solution homogeneity. Samples were collected from the treated effluent and analyzed for Total Hardness (TH), Total Dissolved Solids (TDS) and Chemical Oxygen Demand (COD). Response Surface Methodology (RSM) was conducted to design a matrix of experiments to optimize the conditions for the treatment process and determine the optimum response in terms of water treatment and CO_2 capture efficiency. For the pure air system, the overall optimum conditions were found to be 12, 27.5 and 284 A/m~2 as pH, temperature and current density, respectively. The percent reduction efficiencies were 47.5, 47.8 and 71.4% for COD, TH and TDS, respectively. For the air-CO_2 system, the overall optimum conditions were 12, 35 and 213.5 A/m~2 for pH, temperature and current density, respectively; the reduction efficiencies were 42, 75 and 74% for COD, TH and TDS, respectively.
机译:这项研究的目的是评估电凝在处理碳化物浆料,乙炔生产过程中产生的废水以及捕获二氧化碳方面的潜在用途。使用电化学间歇反应器以140-290 A / m〜2的不同电流密度进行了几次实验。将纯净空气和空气中10%的二氧化碳混合物注入反应器系统,以确保良好的混合和溶液均匀性。从处理后的废水中收集样品,并分析其总硬度(TH),总溶解固体(TDS)和化学需氧量(COD)。进行了响应表面方法学(RSM),以设计实验矩阵,以优化处理过程的条件并确定水处理和CO_2捕集效率方面的最佳响应。对于纯空气系统,总的最佳条件是pH,温度和电流密度分别为12、27.5和284 A / m〜2。 COD,TH和TDS的百分比降低效率分别为47.5、47.8%和71.4%。对于空气CO_2系统,pH,温度和电流密度的总体最佳条件分别为12、35和213.5 A / m〜2。 COD,TH和TDS的降低效率分别为42%,75%和74%。

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