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首页> 外文期刊>International Journal of Greenhouse Gas Control >Technical & economic evaluation of a mineral carbonation process using southern Quebec mining wastes for CO2 sequestration of raw flue gas with by-product recovery
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Technical & economic evaluation of a mineral carbonation process using southern Quebec mining wastes for CO2 sequestration of raw flue gas with by-product recovery

机译:使用魁北克南部采矿废料将二氧化碳烟气与副产品回收的二氧化碳封存的矿物碳化过程的技术和经济评估

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摘要

This paper focuses on an energy and economic analysis of a mineral carbonation process developed to treat raw flue gas issued from an industrial plant. The process uses Serpentinite based mining residues available in very large quantities close to an industrial center in southern Quebec. A model based on a mass balance obtained from laboratory scale experiments allowed the evaluation of the energy requirements of the process. The integration of these results to the particular situation of the Quebec province showed the process feasibility. In addition, economic investigations illustrated the profitability of such plant because of the high potential sale value of the carbonates produced. This work aims to give a particular focus on a technology developed for a niche problem but also gives valuable information for the development of other potential mineral carbonation processes elsewhere in the world. Results show that 7.8 GJ/t CO2 is required to sequester 234 kg of CO2 per tonne of rocks. Calculations showed that a plant with a capacity of 200t of rocks treated per hour, using biomass for the heat requirements and train for the rock transportation would treat 387 000 tCO(2) per year. The global process cost is estimated at 144 $/tCO(2) (146 $/tCO(2) avoided). Based on the incomes generated by the by-product sale and the carbon credit tax, revenues of 644 $/tCO(2) are generated, giving a profitable balance. With a payback period of 1.4 years the process is highly beneficial from an economic point of view. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文着重于对矿物碳酸化过程的能源和经济分析,该过程是为处理工厂排放的原始烟气而开发的。该工艺使用了蛇纹石基采矿残留物,该残留物在魁北克南部的一个工业中心附近有大量供应。基于从实验室规模实验获得的质量平衡的模型可以评估过程的能量需求。将这些结果整合到魁北克省的具体情况,表明了该过程的可行性。另外,由于生产的碳酸盐潜在的高销售价值,经济研究表明了这种工厂的盈利能力。这项工作旨在特别关注针对生态位问题开发的技术,同时也为开发世界其他地方的其他潜在矿物碳化过程提供有价值的信息。结果表明,每吨岩石固存234千克二氧化碳需要7.8吉焦/吨二氧化碳。计算表明,一家每小时处理200吨岩石的工厂,利用生物质满足热量需求,并利用火车进行岩石运输,每年将处理387 000 tCO(2)。估计全球流程成本为144 $ / tCO(2)(避免了146 $ / tCO(2))。根据副产品销售产生的收入和碳信用税,产生的收入为644 $ / tCO(2),产生了可盈利的余额。投资回收期为1.4年,从经济角度来看,该过程非常有益。 (C)2016 Elsevier Ltd.保留所有权利。

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