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Assessment of sustainable high temperature hydrogen production technologies

机译:可持续高温氢气生产技术评估

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Apart from being a major feedstock for chemical production, hydrogen is also a very promising energy carrier for the future energy. Currently hydrogen is predominantly produced via fossil routes, but as green energy sources are gaining a larger role in the energy mix, novel and green production routes are emerging. The most abundant renewable hydrogen sources are water and biomass, which allow several possible processing routes, such as electrolysis, thermochemical cycles and gasification. By introducing heat to the process the required electricity demand can be reduced (high temperature electrolysis) or practically eliminated (thermochemical cycles). Each renewable hydrogen production route has its own strength and weaknesses; the choice of the most suitable method is always dependent on the economical potentials and the location. The aim of this paper is to evaluate the different high temperature, renewable hydrogen production technologies. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:除了作为化学生产的主要原料外,氢也是未来能量的非常有希望的能源载体。目前氢主要通过化石路线生产,但随着绿色能源在能量组合中获得更大的作用,新颖和绿色生产线正在出现。最丰富的可再生氢气来源是水和生物质,其允许几种可能的加工途径,例如电解,热化学循环和气化。通过向过程引入热量,可以降低所需的电量(高温电解)或实际消除(热化学循环)。每条可再生氢生产路线具有自己的强度和缺点;最合适的方法的选择总是依赖于经济潜力和位置。本文的目的是评估不同的高温,可再生氢气生产技术。 (c)2019氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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