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Process Optimization for the Preparation of Activated Coke from Industrial Waste Using Response Surface Methodology

机译:响应面法从工业废料中制备活性炭的工艺优化

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Fine blue-coke and direct liquefaction residue of coal are byproducts in the process of coal chemical production. They were taken as raw materials for the preparation of activated coke by the activation of carbon dioxide. The conditions (activation temperature, activation time and carbon dioxide flow rate) for activated coke preparation were optimized by response surface methodology (RSM). Results showed that activation temperature and activation time had a significant effect on the activated coke iodine adsorption value. The synergistic effect of activation time and carbon dioxide flow had a great influence on iodine adsorption value of activated coke. RSM optimization experiment obtained the optimum activation conditions were activation temperature of 850°C, activation time of 90min and carbon dioxide flow rate of 60 mL/min. Under these conditions, the obtained activated coke iodine adsorption value can reach 401 mg/g, which could meet the needs of industrial desulphurization.
机译:煤的精细蓝焦和直接液化残渣是煤化工生产过程中的副产品。它们被用作通过二氧化碳活化制备活化焦炭的原料。活性炭制备的条件(活化温度,活化时间和二氧化碳流速)通过响应面法(RSM)进行了优化。结果表明,活化温度和活化时间对活化焦炭碘吸附值有显着影响。活化时间和二氧化碳流量的协同作用对活化焦炭的碘吸附值有很大影响。通过RSM优化实验得到了最佳活化条件为活化温度850°C,活化时间90min,二氧化碳流速60mL / min。在此条件下,所获得的活性焦炭碘吸附值可以达到401 mg / g,可以满足工业脱硫的需要。

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