Rego de Vasconcelos Bruna, Lavoie Jean-Michel
Biomass Technology Laboratory (BTL), Department of Chemical and Biotechnological Engineering, Université de Sherbrooke, Sherbrooke, QC, Canada.
Front Chem. 2019 Jun 5;7:392. doi: 10.3389/fchem.2019.00392. eCollection 2019.
Environmental issues related to greenhouse gas emissions are progressively pushing the transition toward fossil-free energy scenario, in which renewable energies such as solar and wind power will unavoidably play a key role. However, for this transition to succeed, significant issues related to renewable energy storage have to be addressed. Power-to-X (PtX) technologies have gained increased attention since they actually convert renewable electricity to chemicals and fuels that can be more easily stored and transported. H production through water electrolysis is a promising approach since it leads to the production of a sustainable fuel that can be used directly in hydrogen fuel cells or to reduce carbon dioxide (CO) in chemicals and fuels compatible with the existing infrastructure for production and transportation. CO electrochemical reduction is also an interesting approach, allowing the direct conversion of CO into value-added products using renewable electricity. In this review, attention will be given to technologies for sustainable H production, focusing on water electrolysis using renewable energy as well as on its remaining challenges for large scale production and integration with other technologies. Furthermore, recent advances on PtX technologies for the production of key chemicals (formic acid, formaldehyde, methanol and methane) and fuels (gasoline, diesel and jet fuel) will also be discussed with focus on two main pathways: CO hydrogenation and CO electrochemical reduction.
与温室气体排放相关的环境问题正逐步推动向无化石能源情景的转变,在这种情景中,太阳能和风能等可再生能源将不可避免地发挥关键作用。然而,要使这一转变成功,必须解决与可再生能源存储相关的重大问题。电力到X(PtX)技术越来越受到关注,因为它们实际上将可再生电力转化为更易于存储和运输的化学品和燃料。通过水电解制氢是一种很有前景的方法,因为它能生产出一种可持续燃料,这种燃料可直接用于氢燃料电池,或用于在与现有生产和运输基础设施兼容的化学品和燃料中还原二氧化碳(CO₂)。CO₂电化学还原也是一种有趣的方法,它允许利用可再生电力将CO₂直接转化为增值产品。在这篇综述中,将关注可持续制氢技术,重点是使用可再生能源的水电解及其在大规模生产以及与其他技术整合方面仍然存在的挑战。此外,还将讨论用于生产关键化学品(甲酸、甲醛、甲醇和甲烷)和燃料(汽油、柴油和喷气燃料)的PtX技术的最新进展,重点是两条主要途径:CO₂加氢和CO₂电化学还原。