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Reduction of FeO in EAF Steelmaking Slag by Metallurgical Coke and Waste Plastics Blends

机译:冶金焦和废塑料混合物减少电弧炉炼钢炉渣中的FeO

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In Australia, the use of plastics has increased tremendously over the last few decades, but less than 20% of the waste plastics are recycled. The rest is usually landfilled, which poses major environmental problems. The solution to this problem involves the development of novel environmentally-benign technologies that would utilise these waste materials. This work investigates the reduction of EAF slags (47% FeO) by blends of metallurgical coke with High-Density Polyethylene (HDPE) plastics at 1550°C. The experiments were conducted in a laboratory-scale horizontal tube furnace, and were coupled with off-gas analysis using an infrared gas analyser and a multiple gas chromatographic analyser. The results indicate that the rate of FeO reduction in slags is significantly higher when the coke/plastics blends were used compared to pure coke, with the maximum rate of reduction (Blend 4) being over twice that of coke. Moreover, the CO_(2) content in the off-gas was observed to decrease (by ~75%) with increase in the polymer content of the blend. Additionally, the degree of carburisation and the removal of sulphur from the metal improved considerably when the coke was blended with plastics. The observed improvements in the rates of reduction, carburisation and desulphurisation are attributed to the reactions of hydrogen evolved from the waste plastics at these high temperatures.
机译:在过去的几十年中,在澳大利亚,塑料的使用已大大增加,但只有不到20%的废塑料被回收。其余的通常都是填埋的,这带来了主要的环境问题。解决该问题的方法包括开发利用这些废料的新型环保技术。这项工作研究了冶金焦炭与高密度聚乙烯(HDPE)塑料在1550°C的共混物对电弧炉炉渣(FeO)含量的降低。实验是在实验室规模的水平管式炉中进行的,并与使用红外气体分析仪和多重气相色谱分析仪的废气分析相结合。结果表明,与纯焦炭相比,当使用焦炭/塑料混合物时,渣中FeO的还原速率明显更高,最大还原速率(混合4)超过了焦炭的两倍。此外,观察到废气中的CO_(2)含量随着共混物中聚合物含量的增加而降低(降低了约75%)。另外,当将焦炭与塑料混合时,渗碳程度和从金属中去除硫的方法得到了显着改善。观察到的还原,渗碳和脱硫速率的提高归因于在这些高温下从废塑料中释放出的氢气反应。

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