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H_2-based synthetic fuels: A techno-economic comparison of alcohol, ether and hydrocarbon production

机译:H_2基合成燃料:酒精,醚和碳氢化合物生产的技术经济比较

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Electricity-based fuels are one promising option to achieve the transition of the energy system, and especially the transport sector, in order to minimize the role of fossil energy carriers. One major problem is the lacking compatibility between different techno-economic assessments, such that recommendations regarding the most promising Power-to-Fuel technology are difficult to make. This work provides a technically sound comparison of various Power-to-Fuel options regarding technological maturity and efficiency, as well as cost. The investigated options include methanol, ethanol, butanol, octanol, DME, OME_(3-5) and hydrocarbons. To guarantee the comparability, all necessary chemical plants were designed in Aspen Plus® to determine material and energy consumption, as well as investment costs within the same boundary conditions and assumptions in all simulations and calculations. Individual technical aspects of the various synthesis routes, as well as their advantages and disadvantages, are highlighted. With an assumed electrolysis efficiency of 70% and considering the energy demand for the CO_2 supply and the energy and operating material demand of the chemical plants, depending on the selected electrofuel, 30-60% of the primary energy in renewable electricity can be stored in the lower heating value of the electrofuel. In the presented results, the costs of H_2 supply are responsible for 58-83% of the total manufacturing costs and thus have the greatest potential to reduce the latter. For the base case (4.6 €/kg_(H2)), various electrofuels will have costs of manufacturing of between 1.85 and 3.96 €/1_(DE). with DME being the cheapest.
机译:为了最大程度地减少化石能源载体的作用,基于电力的燃料是实现能源系统(尤其是运输部门)过渡的一种有前途的选择。一个主要问题是不同技术经济评估之间缺乏兼容性,因此很难提出有关最有前途的动力燃料技术的建议。这项工作对技术成熟度,效率以及成本方面的各种Power-to-Fuel选项提供了技术上合理的比较。研究的选项包括甲醇,乙醇,丁醇,辛醇,DME,OME_(3-5)和碳氢化合物。为保证可比性,在所有模拟和计算中,在相同的边界条件和假设下,在AspenPlus®中设计了所有必需的化工厂,以确定材料和能耗以及投资成本。重点介绍了各种合成路线的各个技术方面,以及它们的优缺点。假设电解效率为70%,并考虑到CO_2供应的能源需求以及化工厂的能源和操作材料需求,则取决于所选的电燃料,可再生能源中30-60%的一次能源可以存储在电燃料的较低热值。在给出的结果中,H_2的供应成本占总制造成本的58-83%,因此具有最大的潜力来降低后者。对于基本情况(4.6€/ kg_(H2)),各种电燃料的制造成本将在1.85至3.96€/ 1_(DE)之间。 DME是最便宜的。

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