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首页> 外文期刊>Applied Energy >Development of CuFeMnAlO_(4+δ) oxygen carrier with high attrition resistance and 50-kWth methane/air chemical looping combustion tests
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Development of CuFeMnAlO_(4+δ) oxygen carrier with high attrition resistance and 50-kWth methane/air chemical looping combustion tests

机译:具有高耐磨性和50-kW甲烷/空气化学环燃烧试验的Cufemnalo_(4 +δ)氧载体的开发

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摘要

A Copper-Ferri-Manganese-Aluminate spinel (CuFeMnAlO4+delta) oxygen carrier, developed at the US Department of Energy's (DOE) National Energy Technology Laboratory (NETL), shows promising results for chemical looping combustion with methane. Attrition resistance of the spinel oxygen carrier (160-600 mu m) produced by a wet agglomeration method was significantly higher than that observed previously with a Copper-Ferri-Aluminate (CuFeAlO4) oxygen carrier. Improved attrition resistance of the novel carrier can be attributed to minimal alumina phase segregation and minimal carbon formation. Heats of reaction measured by differential scanning calorimetry indicated exothermicity during reduction with methane. The total oxygen transfer capacity of the material was about 10.5 wt% at 850 degrees C. The attrition resistance and the oxygen transfer capacity of the carrier prepared at a commercial manufacturing facility (180 kg) were very similar to observed values during the development phase with the lab scale preparations. The material displays satisfactory methane conversion and significantly high particle durability during a 54 h test campaign conducted in NETL's 50-kWth chemical looping dual fluid bed reactor unit at temperatures ranging from 700 to 900 degrees C. Low oxygen carrier make-up cost, due to the use of natural ore and pigment grade raw materials during synthesis and very low attrition rates, exceeded the performance goals determined by systems studies.
机译:在美国能源部(DOE)国家能源技术实验室(Net1)开发的铜 - 摩尔锰 - 铝酸铝磷灰石(Cufemnalo4 + Delta)氧载体显示出与甲烷化学环化燃烧的有希望的结果。尖晶石载氧体的耐磨耗性(160-600微米)通过湿凝聚法制造比用铜 - 铁淦氧铝(CuFeAlO4)氧载体先前观察到显著更高。新型载体的耐磨性可归因于最小的氧化铝相偏析和最小碳形成。通过差示扫描量热法测量的反应热量在用甲烷还原过程中表明放热。在850℃下,材料的总氧转移能力约为10.5wt%。在商业制造设施(180kg)上制备的载体的磨损性和氧气转移能力与显影阶段的观察值非常相似实验室规模准备。该材料在NetL 50六六型化学循环双流体床反应器单元的54小时测试活动期间显示令人满意的甲烷转换和显着高的颗粒耐久性,其温度为700至900摄氏度。低氧载体构成成本在合成期间使用天然矿石和颜料级原料和磨损率非常低,超过了系统研究确定的性能目标。

著录项

  • 来源
    《Applied Energy》 |2021年第15期|116507.1-116507.14|共14页
  • 作者单位

    US Dept Energy USDOE Natl Energy Technol Lab NETL 3610 Collins Ferry Rd Morgantown WV 26505 USA;

    US Dept Energy USDOE Natl Energy Technol Lab NETL 3610 Collins Ferry Rd Morgantown WV 26505 USA|Leidos Res Support Contractor NETL USDOE 3610 Collins Ferry Rd POB 880 Morgantown WV 26507 USA;

    US Dept Energy USDOE Natl Energy Technol Lab NETL 3610 Collins Ferry Rd Morgantown WV 26505 USA|Oak Ridge Inst Sci & Educ ORISE NETL USDOE 3610 Collins Ferry Rd Morgantown WV 26507 USA;

    US Dept Energy USDOE Natl Energy Technol Lab NETL 3610 Collins Ferry Rd Morgantown WV 26505 USA;

    US Dept Energy USDOE Natl Energy Technol Lab NETL 3610 Collins Ferry Rd Morgantown WV 26505 USA|Oak Ridge Inst Sci & Educ ORISE NETL USDOE 3610 Collins Ferry Rd Morgantown WV 26507 USA;

    US Dept Energy USDOE Natl Energy Technol Lab NETL 3610 Collins Ferry Rd Morgantown WV 26505 USA;

    US Dept Energy USDOE Natl Energy Technol Lab NETL 3610 Collins Ferry Rd Morgantown WV 26505 USA;

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

    CuFeMnAlO4+delta oxygen carrier; Methane chemical looping combustion t; Oxygen carrier commercial preparation; Attrition resistant oxygen carrier;

    机译:Cufemnalo4 + Delta氧气载体;甲烷化学循环燃烧T;氧气载体商业制备;耐药氧载体;

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