从原料到未来的化学品:重新思考工业烯集群中的碳来源
Inna Stepchuk1, Mar Pérez-Fortes1, Andrea Ramírez2
1Department of Engineering Systems and Services, Faculty of Technology, Policy and Management, Delft University of Technology, Jaffalaan 5, Delft 2628 BX, The Netherlands.
概括
通过使用替代碳来源 (ACS) 去化石化化工业,可以减少排放和用水. 然而,整合多个ACS流程需要对现有的石化集群进行重大改变.
科学领域:
- 化学工程是化学工程的重要组成部分.
- 工业生态学 工业生态学
- 可持续性科学 可持续性科学
背景情况:
- 化学工业面临着越来越大的压力,迫使其摆脱化石燃料.
- 从替代碳来源 (ACS) 生产化学品是一个关键的研究领域.
- 将ACS集成到现有的工业系统的影响尚未得到充分理解.
研究的目的:
- 系统地评估鹿特丹港的烯集群去化石化的影响.
- 评估整合单个和多个基于ACS的流程的影响.
- 了解石油化学集群转型中的挑战和机遇.
主要方法:
- 分析了九种基于化石和三种基于ACS的工艺 (基于CO2的聚,生物烯糖醇,生物MTBE).
- 在烯集群中模拟ACS过程的单独和同时集成.
- 评估集群布局,能源和水消耗以及二氧化碳排放的变化.
主要成果:
- 整合一个单一的ACS工艺可能会导致上游化学品过量,但会减少总体能源,水资源使用和直接的CO2排放.
- 同时部署多个ACS工艺可实现完全脱化石化,但需要进行全面的工业改造.
- 集成ACS流程显著改变了石化集群的布局和性能.
结论:
- 在化学工业中,向ACS过渡需要仔细考虑现有的基础设施和共生关系.
- 评估对工业集群的整体影响对于成功的去化石化策略至关重要.
- 简单的技术可以减轻负面影响,并增强ACS集成的好处.
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