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Calculation of the corporate carbon footprint of the cement industry by the application of MC3 methodology

机译:应用MC3方法计算水泥行业的公司碳足迹

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Cement is one of the most widely used construction materials in the world. Its characteristics, physic-ochemical properties and manufacturing process have long been the object of study. However, at this moment in time, the production of this basic construction material still accounts for 5% of worldwide emissions of CO_2 into the atmosphere. Thus, in this age of the ongoing battle against climate change, cement alone has become a key objective to which measures must be applied to mitigate the negative impact of this material on the environment. This article evaluates the sustainability of a cement industry by using one of the most rigorous tools currently in existence - the Composed Method of Financial Accounts (MC3) in its second version V.2.0. The study is based on the analysis of three model plants: (A) a conventional integral plant, (B) a grinding plant, and (C) an integral plant which has introduced the best available techniques or BAT into the manufacturing process. Therefore, the two most common scenarios in today's market (A and B) can be compared with another plant of the same size (C) in which CO_2 emissions are reduced thanks to the application of BAT. Lastly, the results are compared in each case study, establishing a diagnosis of weaknesses and opportunities for each production system as well as specific measures for action to be applied to each link in the chain that makes up the production process. Also computed is the amount in tons of CO_2 generated in the manufacture of one ton of cement. This value is of great use in the application of other methodologies such as LCA, or in the feedback of the MC3 methodology used here.
机译:水泥是世界上使用最广泛的建筑材料之一。它的特性,理化性质和制造工艺一直是研究的对象。但是,此刻,这种基本建筑材料的生产仍占全球向大气中排放的CO_2的5%。因此,在这个与气候变化进行斗争的时代,仅水泥就已成为一个关键目标,必须采取措施减轻这种材料对环境的负面影响。本文通过使用当前存在的最严格的工具之一(第二版V.2.0中的财务会计的组合方法(MC3))来评估水泥行业的可持续性。该研究基于对三个模型工厂的分析:(A)传统的整体工厂,(B)研磨工厂,以及(C)将最佳可行技术或最佳可行技术引入制造过程的整体工厂。因此,可以将当今市场上最常见的两种情况(A和B)与具有相同大小(C)的另一家工厂进行比较,该工厂由于采用了最佳可行技术而减少了CO_2排放。最后,在每个案例研究中对结果进行比较,确定每个生产系统的弱点和机会,并针对构成生产过程的链中每个环节采取具体的措施。还计算了在制造一吨水泥时产生的以吨二氧化碳为单位的数量。该值在其他方法(例如LCA)的应用中或在此处使用的MC3方法的反馈中非常有用。

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