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Novel Lime Calcination System for CO2 Capture and Its Thermal–Mass Balance Analysis

机译:用于CO2捕获的新型石灰煅烧系统及其热质量平衡分析

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In conventional lime calcination processes, because of fuel combustion in the kiln, the carbon dioxide (CO_(2)) from limestone decomposition is mixed with the flue gas, which results in energy requirement for gas separation in the carbon capture process. Here, a novel lime calcination system with carrier gas (CO_(2)) heating and air cooling is proposed to avoid the mixing problem of the CO_(2) and the flue gas. This system consists of a new shaft kiln with four processing zones and a furnace system, where fuel combustion, limestone reaction, and lime cooling are carried out separately. Therefore, while obtaining qualified lime products, the CO_(2) from limestone decomposition can be captured without a gas separation process, which accounts for 70% of the total carbon emission in lime production. Furthermore, a thermal–mass balance model was developed for the new system. Based on the model calculation, the energy consumption level of the new system was clarified via a case study. Moreover, parametric analyses were performed to examine the influence of the coefficient of excess air, the coefficient of lost carrier gas, and the calorific value of coal gas on the system performance such as the energy consumption and the CO_(2) captured.
机译:在常规的石灰煅烧过程中,由于窑中的燃料燃烧,从石灰石分解的二氧化碳(CO_(2))与烟道气混合,导致碳捕获过程中气体分离的能量要求。这里,提出了一种具有载气(CO_(2))加热和空气冷却的新型石灰煅烧系统以避免CO_(2)和烟道气的混合问题。该系统由具有四个处理区和炉子系统的新轴窑组成,其中燃料燃烧,石灰石反应和石灰冷却分别进行。因此,在获得合格的石灰产品的同时,可以在没有气体分离过程的情况下捕获石灰石分解的CO_(2),其占石灰生产总碳排放量的70%。此外,为新系统开发了热质量平衡模型。基于模型计算,通过案例研究阐明了新系统的能量消耗水平。此外,进行参数分析以检查超空气系数,载体气体系数的影响,以及煤气对捕获的系统性能以及捕获的CO_(2)的煤气的热值。

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