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Green Hydrogen: Production Methodology, Applications and Challenges in Nepal

机译:绿色氢:尼泊尔的生产方法,应用和挑战

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As of 2020, more than 1,250 MW of renewable energy has already been integrated into the Integrated Nepal Power System (INPS). With another 3,150 MW of hydropower projects under construction, the domestic electricity demand is forecasted to be much lower than its production within a few years. As this added capacity is on the horizon, the Nepalese government needs to prioritize domestic utilization of generated power over exporting the excess generation to the international market. One of the means for this is introducing hydrogen technology in the Nepalese market. This paper discusses suitable hydrogen production methodology, particularly green hydrogen via electrolysis and further encompasses the areas of hydrogen where it could play a pivotal role in case of Nepal. Cost analysis of hydrogen production is also conducted for 50kW to 500kW system. However, as hydrogen technology is still in its infancy, a well-informed selection of technology should be emphasized for the production of hydrogen in the context of Nepal. Attributes such as high energy density and transportability make hydrogen a suitable energy carrier. Further, better energy management can be achieved with the use of fuel cells.
机译:截至2020年,已将超过1,250兆瓦的可再生能源集成到集成的尼泊尔电力系统(INPS)中。随着另外3,150兆瓦的水电项目正在建设中,预计国内电量需求远远低于产量的几年。由于这种增加的能力是在地平线上,尼泊尔政府需要优先考虑国内利用产生的权力,超过国际市场。其中一种手段是在尼泊尔市场引入氢技术。本文讨论了合适的氢生产方法,特别是绿色氢通过电解,进一步包括氢气的区域,在尼泊尔的情况下它可以发挥枢轴作用。还进行了50kW至500kW的氢气生产成本分析。然而,随着氢技术仍处于初期的初期,应强调在尼泊尔背景下生产氢气的精通信息。诸如高能量密度和可运输性等的属性使氢成为合适的能量载体。此外,通过使用燃料电池,可以实现更好的能量管理。

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