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Hydrogen derived from algae and cyanobacteria as a decentralized fueling option for hydrogen powered cars: Size, space, and cost characteristics of potential bioreactors

机译:衍生自藻类和蓝藻作为氢气动力汽车的分散燃料选择的氢:潜在生物反应器的尺寸,空间和成本特征

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摘要

New options are needed to reduce the impact of motor vehicles on climate change and declining fossil fuel resources. Cars which are fueled by hydrogen could be a sustainable method of transportation if suitable technologies can be devised to produce hydrogen in an environmentally benign manner along with the provision of the necessary fueling infrastructure. This paper assesses size, space, and cost requirements of bioreactors as a decentralized option to supply hydrogen powered cars with biohydrogen produced from algae or cyanobacteria on a theoretical basis. Decentralized supply of biohydrogen could help to reduce the problems that hydrogen cars face regarding market penetration. A feasibility study for decentralized biohydrogen production is conducted, taking the quantity of hydrogen which is needed to fuel current hydrogen cars into account. While this technology is, in theory, feasible, sizes, and costs of such reactors are currently too high for widespread adoption. Thus, more R&D is needed to close the gap and to approach marketability.
机译:需要新的选择来减少机动车辆对气候变化的影响和化石燃料资源下降。如果可以设计合适的技术以环境良好的方式制造氢气,则通过氢气推动的汽车可以是可持续的运输方法,并随着提供必要的燃料基础设施。本文评估生物反应器的尺寸,空间和成本要求作为分散的选择,以便在理论基础上用藻类或蓝藻产生的生物氢气提供氢气动力汽车。分散的生物氢气供应有助于减少氢气面对市场渗透的问题。进行了对分散的生物氢生产的可行性研究,采用燃料所需的氢气量,考虑到燃料电流。虽然这种技术在理论上,这种技术的可行性,尺寸和这些反应堆的成本目前太高,以广泛采用。因此,需要更多的研发来缩小间隙并接近可销售性。

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