Understanding the Level of Integration in Existing Chemical Clusters: Case Study in the Port of Rotterdam.

Circular economy and sustainability Pub Date : 2025-01-01 Epub Date: 2024-10-09 DOI:10.1007/s43615-024-00410-5
Michael Tan, Paola Ibarra-González, Igor Nikolic, Andrea Ramírez Ramírez
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Abstract

The petrochemical industry is composed of several interconnected processes that use fossil-based feedstock for producing chemicals. These processes are typically geographically clustered and often belong to different parties. Reducing the environmental impacts of the petrochemical industry is not straightforward due to, on the one hand, their reliance on fossil fuels for energy and as a feedstock and, on the other hand, the significant level of interconnected energy and material flows among processes. Current methods for analyzing changes to existing processes cannot capture the multitude and level of interactions. The goal of this paper is to create a model of a petrochemical cluster and analyze its physical characteristics and performance. This paper addresses this goal by developing an assessment method that combines process simulations, multiplex graph analysis, and key performance indicators. The method is applied to a case study based on the petrochemical cluster in the Port of Rotterdam, resulting in a uniquely highly detailed model of a petrochemical cluster. The network analysis results show that only some of the processes are very interconnected. From the performance analysis, it can be observed that the olefins process is the most carbon-intense and has high CO2 emissions. Additionally, the results showed the importance of considering existing interconnections when assessing the current performance of existing petrochemical clusters or the performance due to future changes to chemical processes. For instance, some changes would occur to an industrial cluster by introducing alternative carbon sources, such as biomass or CO2.

Supplementary information: The online version contains supplementary material available at 10.1007/s43615-024-00410-5.

了解现有化工集群的整合水平:以鹿特丹港为例。
石化工业由几个相互关联的过程组成,这些过程使用化石原料生产化学品。这些流程通常在地理上聚集在一起,并且通常属于不同的方。减少石化工业对环境的影响并非易事,一方面,它们依赖化石燃料作为能源和原料,另一方面,过程之间相互关联的能源和物质流动水平很高。当前用于分析现有流程变更的方法无法捕获交互的数量和级别。本文的目标是建立一个石化集群模型,并分析其物理特征和性能。本文通过开发一种结合过程模拟、多路图分析和关键性能指标的评估方法来解决这一目标。将该方法应用于基于鹿特丹港石化集群的案例研究,得出了一个独特的高度详细的石化集群模型。网络分析结果表明,只有部分过程是紧密相连的。从性能分析可以看出,烯烃工艺是碳强度最大的工艺,二氧化碳排放量高。此外,研究结果表明,在评估现有石化集群的当前性能或未来化学工艺变化带来的性能时,考虑现有互连的重要性。例如,通过引入诸如生物质或二氧化碳等替代碳源,工业集群将发生一些变化。补充信息:在线版本包含补充资料,下载地址为10.1007/s43615-024-00410-5。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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