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A novel Carbon Capture and Utilisation concept applied to the ceramic industry

机译:一种新颖的碳捕集与利用概念,应用于陶瓷行业

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摘要

This paper investigates a new concept for the CO_(2)emission mitigation in the ceramic industry based on carbon reduction and methane formation. The concept is analysed as a retrofit to the natural gas fuelled ceramic kiln that represents the main responsible of this industry in terms of energy consumption and exhaust emissions. The carbon dioxide conversion to methane is obtained by reduction with hydrogen on a Ni catalyst and thus methane is used to fuel the standard burners that equip the kiln. The paper addresses different sources for the hydrogen used as a feedstock for the proposed concept as well as alternative catalysts are explored and compared in terms of reduction efficiency and costs. A lumped and distributed parameter simulation of the entire ceramic kiln is combined to the CFD simulation of the reactor to estimate the efficiency of the CO_(2)reduction and the corresponding methane production for a reference ceramic kiln. The results of the numerical simulations are then employed to discuss the potential benefits of the proposed concept in terms of carbon dioxide emission reduction for the ceramic production. An economic assessment of the system analysed is also carried out concept to determine the investment necessary to implement the technology in an existing ceramic kiln. The potential replicability for other industrial sector is also addressed.
机译:本文研究了基于碳减少和甲烷形成的陶瓷工业中减少CO_(2)排放的新概念。对该概念进行了分析,以作为对天然气燃料陶瓷窑炉的改造,该窑炉在能耗和废气排放方面代表了该行业的主要责任。通过在Ni催化剂上用氢气还原可将二氧化碳转化为甲烷,因此甲烷可用于为装有窑炉的标准燃烧器提供燃料。本文针对拟议概念中用作原料的氢气的来源进行了探讨,并就还原效率和成本进行了研究并比较了替代催化剂。将整个陶瓷窑炉的集总和分布参数模拟与反应堆的CFD模拟相结合,以估算参考陶瓷窑炉的CO_(2)还原效率和相应的甲烷生成量。然后将数值模拟的结果用于讨论所提出的概念在减少陶瓷生产中二氧化碳排放方面的潜在益处。还对所分析系统进行了经济评估,以确定在现有陶瓷窑中实施该技术所需的投资。还解决了其他工业部门的潜在可复制性。

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