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首页> 外文期刊>ChemCatChem >Looking at the Future of Chemical Production through the European Roadmap on Science and Technology of Catalysis the EU Effort for a Long-term Vision
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Looking at the Future of Chemical Production through the European Roadmap on Science and Technology of Catalysis the EU Effort for a Long-term Vision

机译:通过欧洲路线图来看化学生产的未来,对催化催化的科学和技术欧盟努力实现长期愿景

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摘要

This Essay presents in short the initiative of the European Commission to strengthen the activities in the area of catalysis, a key technology for a sustainable future. In particular, this Essay discusses the thematic European Cluster on Catalysis and its main output: The European Roadmap on Science and Technology of Catalysis. Between the main drivers for the sustainable future of chemical and energy vectors, production of the following aspects have been identified: 1) the change in the energy-chemistry nexus, and the need to move to a new sustainable energy scenario and of enabling long-distance (world scale) trading of renewable energy, 2) the change to a new vision for refineries, bio-refineries, and bio-factories, 3) metha-nol, as key chemical at the crossover of new energy-chemistry nexus, 4) the new possibilities by exploiting shale-gas, and biogas-based chemistry, and 5) solar-driven chemistry. To address this changing scenario, the Roadmap has identified a series of grand-challenges for catalysis, discussed in terms of the strategic research agenda and implementation plans: 1) catalysis to address the evolving energy and chemical scenario, 2) catalysis for a cleaner and sustainable future, and 3) addressing catalysis complexity-the latter being divided in three sub-topics (advanced design of novel catalysts, understanding catalysts from a molecular to a material scale, and expanding catalysis concepts).
机译:本文简要介绍了欧洲委员会的倡议,加强了催化领域的活动,是可持续未来的关键技术。特别是,本文讨论了催化欧洲主题欧洲集群及其主要产出:欧洲曲线图对催化科学与技术。在化学和能量向量可持续未来的主要驱动因素之间,已经确定了以下几个方面的生产:1)能源化学Nexus的变化,以及迁移到新的可持续能源情景和实现长期的必要性可再生能源的距离(世界规模)交易,2)改变炼油厂,生物炼油厂和生物工厂,3)Metha-Nol的新愿景,作为新能源 - 化学的交叉的关键化学品,4通过利用页岩气和基于沼气的化学和5)太阳能驱动的化学来实现新的可能性。为了解决这种不断变化的情景,路线图已经确定了催化的一系列巨大挑战,就战略研究议程和实施计划讨论了:1)催化来解决更清洁的能源和化学场景,2)催化作用可持续的未来,以及3)解决催化复杂性 - 后者分为三个子主题(新型催化剂的先进设计,了解来自分子到物质规模的催化剂,以及扩大催化概念)。

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