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首页> 外文期刊>Energy >Demonstration of 0.1 MWth pilot-scale pressurized oxy-fuel combustion for unpurified natural gas without CO_2 dilution
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Demonstration of 0.1 MWth pilot-scale pressurized oxy-fuel combustion for unpurified natural gas without CO_2 dilution

机译:用于无CO_2稀释的未纯化天然气的0.1 MWTM先导尺度加压氧燃料燃烧的示范

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摘要

The pressurized oxy-fuel combustion system is renowned for its compatibility with carbon capture and storage technologies. This study aims to investigate the characteristics and potential of the pressurized oxy-fuel combustion system using unpurified natural gas and pure oxygen without CO2 dilution to decrease the cost of the purification process and the penalty of plant efficiency. The pilot-scale pressurized oxy-fuel combustion system was successfully demonstrated to study the characteristics of combustion, heat transfer, and NOx emission. For a given heat input, the mean temperature decreased, despite an increase in the adiabatic flame temperature due to pressurization. The heat recovery rate of the coolant in all the tested cases was approximately 84-86%. The radiative heat transfer was enhanced by the flue gas that was mainly composed of H2O and CO2 at high pressures. The NOx concentration decreased with the reduction in mean temperature, which suppressed the formation of thermal NO. The proportion of NO2 in NOx was approximately 25-28% at a pressure of 10 bar with respect to various N-2 fractions. With respect to the high pressure and heat input, the NOx concentration of the lower momentum burner was decreased via the reduction of hot-spots and peak temperature. (C) 2021 Elsevier Ltd. All rights reserved.
机译:加压氧燃料燃烧系统以其与碳捕获和储存技术的兼容性而闻名。本研究旨在探讨使用未纯化的天然气和纯氧的加压氧 - 燃料燃烧系统的特性和潜力,无需CO2稀释,降低净化过程的成本和植物效率的惩罚。成功证明了试验规模加压氧 - 燃料燃烧系统,以研究燃烧,传热和NOx排放的特性。对于给定的热输入,尽管由于加压引起的绝热火焰温度增加,平均温度降低。所有测试案例中冷却剂的热回收率约为84-86%。通过在高压下主要由H 2 O和CO 2组成的烟道气增强了辐射热传递。 NOx浓度随着平均温度的降低而降低,这抑制了热量的形成。对于各种N-2级分,NOx中NO 2中NO 2的比例约为25-28%。关于高压和热输入,通过降低热斑和峰值温度降低较低动量燃烧器的NOx浓度。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Energy》 |2021年第15期|120021.1-120021.12|共12页
  • 作者单位

    Pohang Univ Sci & Technol Dept Mech Engn Cheongam Ro 77 Pohang Si South Korea|Korea Inst Ind Technol Clean Energy R&D Dept Yangdaegiro Gil 89 Cheonan Si Ipjang Myeon South Korea;

    Korea Inst Ind Technol Clean Energy R&D Dept Yangdaegiro Gil 89 Cheonan Si Ipjang Myeon South Korea;

    Korea Inst Ind Technol Clean Energy R&D Dept Yangdaegiro Gil 89 Cheonan Si Ipjang Myeon South Korea;

    Korea Inst Ind Technol Clean Energy R&D Dept Yangdaegiro Gil 89 Cheonan Si Ipjang Myeon South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pressurized combustion; Oxy-flame; Heat transfer; Methane; NOx;

    机译:加压燃烧;氧式火焰;传热;甲烷;NOx;

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