Nuclear hydrogen using high temperature electrolysis and light water reactors for peak electricity production

C. Forsberg, M. Kazimi
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引用次数: 14

Abstract

In a carbon-dioxide-constrained world, the primary methods to produce electricity (nuclear, solar, wind and fossil fuels with carbon sequestration) have low operating costs and high capital costs. To minimise the cost of electricity, these plants must operate at maximum capacity; however, the electrical outputs do not match changing electricity demands with time. A system to produce intermediate and peak electricity is described that uses light water reactors (LWR) and high temperature electrolysis. At times of low electricity demand the LWR provides steam and electricity to a high temperature steam electrolysis system to produce hydrogen and oxygen that are stored. At times of high electricity demand, the reactor produces electricity for the electrical grid. Additional peak electricity is produced by combining the hydrogen and oxygen by operating the high temperature electrolysis units in reverse as fuel cells or using an oxy-hydrogen steam cycle. The storage and use of hydrogen and oxygen for intermediate and peak power production reduces the capital cost, increases the efficiency of the peak power production systems, and enables nuclear energy to be used to meet daily, weekly and seasonal changes in electrical demand. The economic viability is based on the higher electricity prices paid for peak-load electricity.
核氢利用高温电解和轻水反应堆进行高峰发电
在一个二氧化碳限制的世界里,主要的发电方法(核能、太阳能、风能和具有碳封存的化石燃料)运营成本低,资本成本高。为了最大限度地降低电力成本,这些发电厂必须以最大容量运行;然而,电力输出不能满足随时间变化的电力需求。介绍了一种利用轻水堆和高温电解技术生产中峰电的系统。在电力需求低的时候,LWR向高温蒸汽电解系统提供蒸汽和电力,以产生储存的氢和氧。在电力需求高的时候,反应堆为电网发电。通过反向操作高温电解装置作为燃料电池或使用氧-氢蒸汽循环,将氢和氧结合在一起产生额外的峰值电力。氢气和氧气的储存和使用可以降低资本成本,提高峰值电力生产系统的效率,并使核能能够用于满足每日、每周和季节性的电力需求变化。经济可行性是基于为高峰负荷电力支付更高的电价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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