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DECOMPOSITION KINETICS OF FLASH SMELTING FLUE DUST SULPHATES

机译:熔炼烟道粉硫酸盐的分解动力学

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Sulphate decomposition was studied in the conditions of a typical copper flash smelting heat recovery boiler. The aim was to determine the kinetics of the copper sulphate decomposition reactions and to find out if they are likely to take place in the process conditions prevailing in an industrial HRB. The information is essential in CFD-modelling of the reactions taking place in the boiler and for optimising the process. Thermal decomposition of sulphates was studied by thermogravimetry. The experiments were conducted with a commercial copper sulphate, a partially sulphated copper oxide and an actual process flue dust. The main variables studied were temperature and gas composition of a N2-O2-SO2-mixture. The samples were characterized with SEM, optical microscope and XRD. Temperature affected the decomposition rate strongly but the gas composition had a minor effect on the kinetics. The decomposition was fastest in the partly sulphated oxide and slowest in commercial copper sulphate.
机译:在典型的铜闪速熔炼热回收锅炉的条件下研究了硫酸盐的分解。目的是确定硫酸铜分解反应的动力学,并确定它们是否可能在工业HRB普遍存在的工艺条件下发生。该信息对于在锅炉中发生的反应进行CFD建模以及优化过程至关重要。通过热重分析法研究了硫酸盐的热分解。实验是使用商品硫酸铜,部分硫化的氧化铜和实际工艺烟道粉尘进行的。研究的主要变量是温度和N2-O2-SO2-混合物的气体组成。用SEM,光学显微镜和XRD对样品进行表征。温度强烈影响分解速率,但气体组成对动力学影响较小。在部分硫化的氧化物中分解最快,而在商业硫酸铜中分解最慢。

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