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Assessing emerging energy-efficient technologies for industry-application of the EDUARD methodology for the case of high temperature electrolysers

机译:评估为高温电解器的eDUAR和D方法的行业应用提供新兴节能技术

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Research and Development (R&D) for energy efficient solutions is not an objective for itself, but it must serve society by reducing energy costs and avoiding GHG emissions. Public R&D funds should be efficiently allocated as far as possible by addressing substantial energy efficiency potentials, by identifying bottlenecks and detectable risks, and by supporting the stakeholder dialogue with comprehensive information. These objectives can be supported by applying a methodology that has been developed by an interdisciplinary group of energy technologists, economists, and innovation researchers, called the Energy Data and Analysis of Research & Development - EDUAR&D; (Jochem et al. 2009). The methodology has been successfully applied to several energy technologies, such as passive houses, industrial furnaces, the PEM fuel cell, and carbon capture and storage. The paper at hand gives summarised results from an analysis of solid oxide high temperature electrolysers as an innovative and energy efficient means to produce green hydrogen, e.g. for utilization in future primary steelmaking. Where applicable, e.g. for the innovation system, regional specifics for the case of Germany were assessed. The analysis presented shows a promising energy efficient electrolyser technology for basic industries, in a low-to-medium stage of its technological development, with a considerable increase of R&D and patent activities (but still on a rather low absolute level), low market activities and a very clear need for policies supporting further R&D as well as market entry through industrial scale demonstration plants.
机译:节能解决方案的研究和开发(R&D)本身并不是一种目标,但它必须通过降低能源成本并避免温室气体排放来服务社会。通过识别瓶颈和可检测的风险来解决大量能源效率潜力,以及通过全面信息支持利益攸关方对话,应尽可能通过解决大量能源效率潜力来有效地分配公共研发资金。这些目标可以通过应用由跨学科的能源技术专家,经济学家和创新研究人员开发的方法来支持,称为能源数据和研究与发展 - Eduar&D; (Jochem等人2009)。该方法已成功应用于几种能源技术,例如被动房屋,工业炉,PEM燃料电池和碳捕获和储存。手中的纸张从固体氧化物高温电解器分析作为产生绿色氢的创新和能量有效的手段,给出了总结结果。用于未来原炼钢的利用。如果适用,例如,对于创新制度,评估德国案例的区域细节。提出的分析显示了基础行业的有希望的节能电解槽技术,在其技术开发的低到中等阶段,具有相当大的研发和专利活动(但仍处于绝对水平相当低),市场活动低并通过工业规模示范厂获得支持进一步研发以及市场进入的政策非常清楚。

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