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Facile and cost-efficient indirect carbonation of blast furnace slag with multiple high value-added products through a completely wet process

机译:通过完全湿法将高炉渣与多种高附加值产品进行间接且经济高效的间接碳化

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Mineral carbonation of blast furnace slag (BFS) has been proposed as a comprehensive method for carbon capture and storage and utilization of the industrial solid waste. However, the challenge for this technology to be applied practically is how to reduce the cost of process. A completely wet process combining a CO2-mineralization cell for CO2 capture and membrane electrolysis for recovery of carbonated mother liquor is proposed to simultaneously fix CO2 and produce multiple value-added products. In this process, Ca, Mg, Al, and Si are extracted from BFS with an NH4HSO4 solution prepared from H2SO4 and (NH4)(2)SO4 with extraction ratios of 97.3%, 98.8%, 96.4%, and 94.3% under optimized conditions, respectively. The extracted Al and Si are then recovered as NH4Al(SO4)(2)center dot 12H(2)O (99.59 wt%) and SiO2 (97.70 wt%) with 93% and 98.1% yield, respectively. The CaSO4-rich leaching residue and MgSO4-rich leachate after complete depletion of the residual Al and Si are successively carbonated with an NH4HCO3 solution obtained from a CO2-mineralization cell with total CO2 capacity up to 361 kg-CO2 per tonne BFS. The preliminary economic evaluation shows that the present carbonation route is a cost-efficient method to comprehensively utilize BFS and reduce CO2 emissions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:已经提出高炉矿渣(BFS)的矿物碳化是一种用于工业固体废物的碳捕获,存储和利用的综合方法。但是,要实际应用该技术的挑战在于如何降低工艺成本。提出了一种完全湿法工艺,该工艺结合了用于捕获二氧化碳的CO2矿化池和用于回收碳酸母液的膜电解,以同时固定CO2并生产多种增值产品。在此过程中,在优化的条件下,用由H2SO4和(NH4)(2)SO4制备的NH4HSO4溶液从BFS中提取Ca,Mg,Al和Si,提取率分别为97.3%,98.8%,96.4%和94.3%。 , 分别。然后将提取的Al和Si回收为NH4Al(SO4)(2)中心点12H(2)O(99.59 wt%)和SiO2(97.70 wt%),产率分别为93%和98.1%。完全耗尽残留的Al和Si后,将富含CaSO4的浸出残余物和富含MgSO4的浸出液依次用从CO2矿化池中获得的NH4HCO3溶液进行碳酸盐处理,其总CO2容量高达每吨BFS 361 kg-CO2。初步的经济评估表明,目前的碳化路线是一种综合利用BFS和减少CO2排放的经济有效的方法。 (C)2018 Elsevier Ltd.保留所有权利。

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