用于电-气方案的化学循环燃烧发电系统

Muhammad W. Ajiwibowo, A. Darmawan, Muhammad Aziz
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引用次数: 0

摘要

可再生能源为全球变暖提供了一个快速的解决方案,但它也有缺点。太阳能和风能等可再生能源无法持续使用;因此,发电的间歇性是一个问题。发电量的波动可能会损坏电网。多年来,研究人员已经提出了解决这个问题的办法,即通过储能系统存储多余的电力。最有效的方法之一是通过固体氧化物电解池(SOEC)生产氢气。氢气本身含有大量的能量,可以通过燃烧或燃料电池转化为电能。因此,以氢气的形式储存电能被证明是有效的。能源储存系统,如电制气,可能提供一种清洁和有效的方式来储存过剩的电力。在这项工作中,提出了一种与化学循环燃烧联合循环系统相结合的电-气系统,以提供来自电网的未使用电力的基负荷和中间负荷。采用强化的工艺集成来实现最佳的热量和能量回收。本章重点设计了一个由电-气转换方法和氢动力化学环燃烧发电系统组成的系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical Looping Combustion Power Generation System for a Power‐to‐Gas Scheme
Renewable energy provides a quick win solution for global warming, but it comes with drawbacks. Renewable sources such as solar and wind are not available for continuous use; thus, intermittency of electric power generation is an issue. Fluctuation of electricity production could damage the grid. Throughout the years, researchers have come up with solutions to solve this problem by storing the excess electricity via an energy storage system. One of the most efficient options is through solid oxide electrolysis cell (SOEC) to produce H 2 . In itself, H 2 contains a lot of energy and can be converted to electricity via combustion or fuel cell. Therefore, storing electricity in the form of H 2 could prove to be effective. Energy storage systems such as power-to-gas may provide a clean and efficient way to store the overproduced electricity. In this work, a power-to-gas system coupled with a chemical looping combustion combined-cycle system is proposed to provide base and intermediate load power from the unused electricity from the grid. Enhanced process integration was employed to achieve optimal heat and exergy recovery. This chapter focuses on the design of a system consisting of a power-to-gas conversion method and a H 2 -powered chemical looping combustion power generation system.
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