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Performance analysis of the gasification of spent pot lining (SPL) carbonaceous solid waste materials generated from the primary aluminum industry

机译:初级铝工业产生的花盆衬里(SPL)碳质固体废料的气化性能分析

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Spent pot lining (SPL) is a one of the most important carbonaceous solid waste generated by the primary aluminum industry during the manufacture of aluminum metal in electrolytic cells. The main objective of this study is to investigate the gasification performance of SPL to produce alternative syngas fuel. SPL gasification process model using Aspen plus software based on thermodynamics equilibrium approach was developed. The operating conditions of the gasifier were: gasification temperature of 900 degrees C, equivalence ratio of 0.3 and air is used as the oxidizing agent. The investigation was carried out on four different grades of SPL: raw SPL, water washed SPL, alkali treated SPL and final treated SPL. Based on the gasification modelling and the simulation results, it was noticed that SPL gasification facilitates the formation of synthesis gas; mainly the formation of CO to a certain extent but with a low concentration of H-2. Compared with conventional fuel (coal) gasification, the alkali treated SPL gasification recorded the ideal performance than that of other SPL fuels with values of hydrogen (H-2), carbon monoxide (CO), cold gas efficiency (CGE), and carbon conversion (CC) of 1.43%, 41%, 58.5%, and 96.9%, respectively. The results show that the alkali treated, and final treated SPL materials can be used to produce alternative syngas fuel to displace fossil fuels.
机译:花盆衬里(SPL)是在电解细胞中铝金属制造过程中由初级铝工业产生的最重要的碳质固体废物之一。本研究的主要目的是研究SPL的气化性能,以产生替代合成气燃料。开发了使用基于热力学平衡方法的使用Aspen Plus软件的SPL气化过程模型。气化器的运行条件是:900℃的气化温度,0.3和空气用作氧化剂的等效比。调查在四种不同等级的SPL:原始SPL,水洗SPL,碱处理SPL和最终处理的SPL上进行。基于气化建模和仿真结果,注意到SPL气化有利于合成气的形成;主要是CO在一定程度上形成但具有低浓度的H-2。与传统燃料(煤)气化相比,碱处理SPL气化记录了与氢气(H-2),一氧化碳(CO),冷气效率(CGE)和碳转化率的其他SPL燃料的理想性能。 (CC)分别为1.43%,41%,58.5%和96.9%。结果表明,碱处理和最终处理的SPL材料可用于生产替代合成气燃料以取代化石燃料。

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