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Hydrogen Energy Potential Of Nepal

机译:尼泊尔的氢能潜力

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Nepal is very rich in hydropower. Unfortunately, due to the mountainous topography it is difficult to build a comprehensive electrical grid. Only 30% of the population (primarily in urban areas) currently has access to electricity from the national grid and about 5% from non-grid (micro-hydropower and solar). In addition the power is seasonal, resulting in poor "load factor". On a seasonal basis, the power generated by large hydropower stations during the summer surpasses the peak demand of the country. The peak load varies from 400 MW to 560 MW from 17:00 to 21:00 hours. The maximum demand recorded on December 8, 2004 was 557.53 MW at 18:16 hour. Thus, the widespread hydroelectric potential is not effectively utilized. One of the methods to utilize the available power is production of hydrogen by electrolysis using hydropower, a clean source of renewable energy. Nepal is very rich in perennial rivers and has a potential of 83,000 MW of which 43,000 MW of it is considered economically viable. Only about 550 MW (~1%) of this potential has been harnessed till now. This paper highlights possibilities of generation of hydrogen from the existing hydropower plants during off-peak load and utilization of this hydrogen energy to replace the existing fossil fuels used in transportation, cooking and lighting and to meet the growing peak electricity demand by generating electricity using fuel cell in future. Different scenarios of utilization of hydropower during off-peak load have been forecasted and possible replacement of conventional fuels by hydrogen has been discussed.
机译:尼泊尔水电十分丰富。不幸的是,由于山地地形复杂,难以建立全面的电网。目前只有30%的人口(主要在城市地区)可以通过国家电网获得电力,而大约5%的人口可以通过非电网(微型水电和太阳能)获得电力。另外,功率是季节性的,从而导致较差的“负载系数”。在季节性基础上,夏季大型水电站的发电量超过了该国的峰值需求。从17:00到21:00小时,峰值负荷从400 MW到560 MW不等。 2004年12月8日18:16时记录的最大需求为557.53 MW。因此,不能有效地利用广泛的水电势。利用可用功率的方法之一是使用水力发电(清洁的可再生能源)通过电解生产氢。尼泊尔常年盛产的河流非常丰富,潜力为83,000兆瓦,其中43,000兆瓦被认为在经济上可行。到目前为止,仅利用了约550兆瓦(约1%)的这种潜力。本文重点介绍了在非高峰负荷期间从现有水力发电厂产生氢的可能性,以及利用这种氢能替代运输,烹饪和照明中使用的现有化石燃料,以及通过使用燃料发电来满足不断增长的峰值电力需求的可能性。未来的细胞。预测了在非高峰负荷期间利用水力发电的不同情况,并讨论了用氢替代常规燃料的可能性。

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