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Production Possibilities of a Sustainable Coal, Wind, and Small Modular Reactor Hybrid Energy System

机译:可持续的煤,风和小型模块化反应堆混合能源系统的生产可能性

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摘要

The availability of inexpensive electricity is one of the most significant factors for improving quality of life. With the debate on the effects of carbon dioxide emissions continuing, several countries either have implemented or are considering the reduction of emissions through various economic means. The inclusion of a monetary penalty on carbon emissions would increase the prices of electricity produced by carbon-based sources. The push for large-scale renewable sources of energy has met problems with regards to energy storage and availability. The proposed coal, wind, and nuclear hybrid energy system would combine a renewable energy source, wind, with traditional and stable energy sources, coal and nuclear, to create an integrated and sustainable system. Instead of a light water reactor, a next generation small modular nuclear reactor was evaluated. The coal system utilizes a pressurized circulating fluidized bed system, which can take not only coal but also biomass as a carbon feed-stock. This system also employs a high temperature steam co-electrolysis unit for the utilization of carbon dioxide emissions for the production of synthetic gas which can be used in the production of transportation fuels or chemicals. A rigorous dynamic process model was used to simulate the potential output of the system based on real world dynamic data. System inputs included a full year of dynamic wind speeds for variable power generation and simulated electrical grid demand. These inputs varied the amount of power available for synthetic gas production, and thus, theoretical production possibilities for the hybrid system over a year of operation were formed. This information was used to determine overall process economics by comparison to a conventional coal system by using the sale of synthetic gas and levelized cost of electricity. It was determined that a syngas sale price as low as $0.33 per 1000 SCF allowed for specific hybrid systems to be competitive with conventional technologies.
机译:廉价的电力供应是改善生活质量的最重要因素之一。随着关于二氧化碳排放影响的辩论不断,一些国家已经实施或正在考虑通过各种经济手段减少排放。包括对碳排放量的罚款将提高碳源产生的电力价格。大规模使用可再生能源的努力在能源存储和可用性方面遇到了问题。拟议中的煤炭,风能和核能混合能源系统将把可再生能源,风能与传统的稳定能源,煤炭和核能结合起来,以建立一个综合的,可持续的系统。代替了轻水反应堆,对下一代小型模块化核反应堆进行了评估。煤炭系统利用加压循环流化床系统,该系统不仅可以吸收煤炭,还可以吸收生物质作为碳原料。该系统还采用高温蒸汽共电解装置,利用二氧化碳排放来生产合成气,该合成气可用于生产运输燃料或化学药品。严格的动态过程模型用于基于现实世界的动态数据来模拟系统的潜在输出。系统输入包括用于可变发电的全年动态风速和模拟电网需求。这些输入改变了可用于合成气生产的功率量,因此,形成了混合动力系统在运行一年后的理论生产可能性。通过使用合成气的销售和平准的电费,该信息与常规煤炭系统相比,可用于确定总体过程经济性。经确定,合成气的销售价格低至每1000 SCF 0.33美元,这使得特定的混合动力系统能够与传统技术竞争。

著录项

  • 来源
    《Energy & fuels》 |2018年第10期|10864-10878|共15页
  • 作者单位

    Missouri Univ Sci & Technol, Energy Res & Dev Ctr, 110 ERL,500 West 16th St, Rolla, MO 65409 USA;

    Missouri Univ Sci & Technol, Energy Res & Dev Ctr, 110 ERL,500 West 16th St, Rolla, MO 65409 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:06:40

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