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Sodium Silicide and the Development of the Portable Hydrogen Energy Market

机译:硅化钠和便携式氢气能源市场的发展

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With Li-ion batteries nearing their power limits and small combustion engines responsible for a disproportionate amount of pollution in the U.S., new hydrogen-storage technologies are essential to spark the transition to hydrogen energy. Sodium silicide, a new chemical molecule, enables the real-time and on-demand generation of hydrogen. This novel hydrogen-storage material and its derivatives facilitate high-performance, low-complexity and lightweight fuel cell systems (<3 kW), which are ideal for a number of industries and consumer applications. Transitioning the portable power market to this clean energy technology will result in higher energy efficiencies, a clean source of renewable energy, and a significantly lower environmental impact. Such a transition, however, requires the development of a hydrogen manufacturing supply chain that supports the growth of this new energy technology, Designs for hydrogen-generation cartridges and a high-volume manufacturing line will be presented.
机译:使用锂离子电池,接近其电源限制和小型燃烧发动机,负责美国的污染量,新的储氢技术对于将过渡到氢能量来说是必不可少的。硅化钠,一种新的化学分子,使得能够进行实时和按需产生氢。这种新颖的储氢材料及其衍生物促进了高性能,低复杂性和轻质燃料电池系统(<3千瓦),这对于许多行业和消费者应用是理想的。将便携式电力市场过渡到这种清洁能源技术将导致更高的能量效率,可再生能源的干净来源,对环境影响显着降低。然而,这种过渡需要开发氢制造供应链,其支持这种新能源技术的生长,呈现出氢发电筒的设计和高批量生产线。

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