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首页> 外文期刊>Environmental Progress & Sustainable Energy >Carbonation of BOF Slag in a Rotary Kiln Reactor in View of the Scale-Up of the Wet Route Process
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Carbonation of BOF Slag in a Rotary Kiln Reactor in View of the Scale-Up of the Wet Route Process

机译:碳化的转炉炉渣回转窑反应堆针对湿路线的扩大的过程

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摘要

Carbonation of alkaline residues represents a potentially interesting technique for permanently storing in solid form CO2 contained in flue gas, syngas or biogas, as well as for the valorization of the residues. In particular, the wet carbonation route requires a low amount of water, does not generate wastewater and can be exploited to produce aggregates. The efficacy of this route has been demonstrated at laboratory scale. In view of its scale-up, this study was aimed at evaluating the performance of a wet-route carbonation process applied to Basic Oxygen Furnace (BOF) steel slag employing an operating procedure that could be adopted also at demonstrative or full scale. Dry residues were directly fed by a loading hopper into a rotary kiln reactor, in which gas containing 40% CO2 and steam were flown through. During the experiments, the flow and composition of the gas phase were continuously monitored, allowing to calculate the amount of CO2 captured from the gas phase and to compare it with the CO2 uptake of the solid product. In addition, the leaching behavior of the treated slag was assessed. The results of the tests were close to those obtained in previous experiments performed with pre-humidified BOF slag, both with the same reactor used in this study and at laboratory scale; this suggests that this more automated wet-route process could be employed for demonstration or full scale tests. The set up still needs to be optimized to obtain a product with physical and technical properties suitable for use as aggregate. (c) 2019 American Institute of Chemical Engineers Environ Prog, 38:e13140, 2019
机译:碳化的碱性残留物代表了永久的潜在的有趣的技术以固体形式存储二氧化碳包含在烟气,合成气或沼气以及稳定物价的残留物。碳化路线需要少量的水,不产生废水,可以利用生产总量。在实验室规模已经证明。的扩大,本研究旨在评估性能的水路碳化过程应用于基本的氧气炉转炉钢渣利用一个操作程序也可以采用示范或全面。直接由加料斗旋转窑反应堆,其中包含40%的二氧化碳和天然气蒸汽被空运。气相的流动和组合持续监控,允许计算气态的二氧化碳捕获和数量比较它的二氧化碳吸收固体产品。对渣被评估。测试是接近先前获得的实验与pre-humidified转炉渣,用同样的反应堆中使用研究在实验室规模;这个过程更加自动化的水路用于演示或全面测试。设置仍需要优化来获得物理和技术性质的产品适合用作聚合。化学工程师学会环境掠夺,38: e13140, 2019

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