Department of Engineering, University of Cambridge , Trumpington Street, Cambridge, CB2 1PZ, United Kingdom.
Environ Sci Technol. 2018 Feb 20;52(4):1725-1734. doi: 10.1021/acs.est.7b04573. Epub 2018 Feb 8.
Chemical products are ubiquitous in modern society. The chemical sector is the largest industrial energy consumer and the third largest industrial emitter of carbon dioxide. The current portfolio of mitigation options for the chemical sector emphasizes upstream "supply side" solutions, whereas downstream mitigation options, such as material efficiency, are given comparatively short shrift. Key reasons for this are the scarcity of data on the sector's material flows, and the highly intertwined nature of its complex supply chains. We provide the most up to date, comprehensive and transparent data set available publicly, on virgin production routes in the chemical sector: from fossil fuel feedstocks to chemical products. We map global mass flows for the year 2013 through a complex network of transformation processes, and by taking account of secondary reactants and by-products, we maintain a full mass balance throughout. The resulting data set partially addresses the dearth of publicly available information on the chemical sector's supply chain, and can be used to prioritise downstream mitigation options.
化学产品在现代社会中无处不在。化学工业是最大的工业能源消费者,也是二氧化碳的第三大工业排放源。目前针对化学工业的减排方案组合侧重于上游的“供应方”解决方案,而下游的减排方案,如材料效率,则相对较少受到关注。造成这种情况的主要原因是该行业物质流数据的稀缺性,以及其复杂供应链的高度交织性质。我们提供了最新、最全面和最透明的公开数据集,涉及化学工业的原始生产途径:从化石燃料原料到化学产品。我们通过复杂的转化过程网络来绘制 2013 年的全球质量流,并考虑到二次反应物和副产品,我们在整个过程中保持了完整的质量平衡。由此产生的数据集部分解决了化学工业供应链中缺乏公开信息的问题,并可用于确定下游减排方案的优先级。