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Modeling the dynamic mechanism between cement CO2 emissions and clinker quality to realize low-carbon cement

机译:建模水泥CO2排放与熟料质量之间的动力学机制,以实现低碳水泥

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摘要

To devise low-carbon cement clinker product, in-depth knowledge about the variation mechanism of cement clinker CO2 emissions is the prerequisite. The determinants of cement clinker CO2 emissions in Chinese cement industry have been inquired by several researches recently. However, the impacts and abatement effect of clinker quality on cement clinker CO2 emissions have not been identified yet. In technological sense, there lacks an integrated quantitative model that can elucidate the dynamic mechanism between cement clinker CO2 emissions and clinker quality. To fill this gap, this paper devises a CO2 emission accounting framework integrated with optimization model to explore the dynamic mechanism between cement clinker CO2 emissions and clinker quality. Based on survey data of 2 typical cement clinker production lines in China, the accounting framework is validated with measured data. Through numerical simulation within this framework, a set of sensitivity analysis is conducted. The results indicate that if the target KH (lime saturation ratio) of both production lines climb from -5% to +5%, the process CO2 emission factor will give rise to an increase of about 16.4 and 14.8 kg CO2/t clinker, respectively. With the same variation, the fuel CO2 emission factors of two production lines will gain 17.2 and 13.7 kg CO2/t clinker, respectively. Obviously, controlled decrease of clinker quality can reduce CO2 emission of clinker manufacturing. The results of sensitivity analysis are robust and highlight the remarkable role of clinker quality in both process and fuel emissions. Besides, the integrated framework can provide in-depth investigation into the dynamic mechanism between CO2 emissions and the other determinants. Using this framework, cement plants or industry can develop optimal clinker quality standards on a quantitative basis to achieve low-carbon clinker. (C) 2016 Elsevier B.V. All rights reserved.
机译:要设计低碳水泥熟料产品,必须深入了解水泥熟料CO2排放的变化机理。最近一些研究询问了中国水泥工业中水泥熟料CO 2排放的决定因素。但是,尚未确定熟料质量对水泥熟料CO2排放的影响和减排效果。从技术意义上讲,缺乏能够阐明水泥熟料CO2排放与熟料质量之间动态机制的综合定量模型。为了填补这一空白,本文设计了一个与优化模型相集成的CO2排放核算框架,以探索水泥熟料CO2排放与熟料质量之间的动态机制。根据中国两条典型水泥熟料生产线的调查数据,对实测数据进行了验证。通过在此框架内进行数值模拟,可以进行一组敏感性分析。结果表明,如果两条生产线的目标KH(石灰饱和比)从-5%攀升至+ 5%,则工艺CO2排放因子将分别增加约16.4和14.8 kg CO2 / t熟料。 。在相同的变化下,两条生产线的燃料CO2排放因子将分别增加17.2和13.7 kg CO2 / t熟料。显然,控制熟料质量的下降可以减少熟料生产的二氧化碳排放量。敏感性分析的结果是可靠的,并突出了熟料质量在过程和燃料排放中的显着作用。此外,该综合框架还可以深入研究二氧化碳排放量与其他决定因素之间的动态机制。使用此框架,水泥厂或行业可以定量制定最佳的熟料质量标准,以实现低碳熟料。 (C)2016 Elsevier B.V.保留所有权利。

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