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Development and testing of granular catalysts for combustors of regenerative gas turbine plants

机译:再生燃气轮机燃烧室颗粒催化剂的开发和测试

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摘要

Two types of granular catalysts for effective methane combustion in combustors of gas turbine plants (GTPs) were developed: (1) catalysts based on noble metals with a low Pd content (1-2 wt %), characterized by a low methane ignition temperature, and (2) catalysts based on manganese oxides and hexaaluminates, which have an increased thermal stability. The methane oxidation kinetics was investigated, and combustion in the catalyst chamber of the GTP was simulated. For optimizing the combustion technology, the following two-step process using a combined catalytic package is suggested. The inlet zone of the combustor is filled with a highly active Pd catalyst, which initiates methane oxidation and ensures that the temperature at the exit of this zone is the initial temperature of methane combustion. This takes place in the next zone, which is filled with an oxide catalyst tolerant to high temperatures. The pilot testing of the catalysts was carried out in a model catalytic combustor. The results are in satisfactory agreement with calculated data. Long-term tests indicate the high stability of the catalysts. The Pd catalyst was demonstrated to retain its high activity and to provide an ignition temperature of 240 degrees C. The initial activity of the hexaaluminate-based catalysts remains unchanged after tests at 930 degrees C. The use of a combined charge of the palladium (7-15%) and manganese (85-93%) catalysts in the model GTP combustor allows a high natural gas combustion efficiency to be achieved at a low level of hazardous emissions (NOx, 0-1 ppm; CO, 1-3 ppm; hydrocarbons, 3-10 ppm).
机译:开发了两种类型的颗粒状催化剂,可在燃气轮机(GTP)的燃烧器中有效地燃烧甲烷:(1)基于Pd含量低(1-2 wt%)的贵金属的甲烷燃烧温度低的催化剂, (2)基于氧化锰和六铝酸盐的催化剂,其具有提高的热稳定性。研究了甲烷的氧化动力学,并模拟了GTP催化剂室内的燃烧。为了优化燃烧技术,建议采用组合催化程序的以下两步过程。燃烧室的入口区域充满了高活性的Pd催化剂,该催化剂会引发甲烷氧化,并确保该区域出口处的温度为甲烷燃烧的初始温度。这在下一个区域进行,该区域充满了耐高温的氧化物催化剂。在模型催化燃烧器中进行催化剂的中试测试。结果与计算数据令人满意。长期测试表明催化剂具有很高的稳定性。已证明Pd催化剂可保持其高活性并提供240摄氏度的着火温度。六铝酸盐基催化剂的初始活性在930摄氏度的测试后仍保持不变。使用钯(7 GTP型燃烧器中的-15%)和锰(85-93%)催化剂可以在低水平的有害排放物(NOx,0-1 ppm; CO,1-3 ppm; NOx,5%)下实现高天然气燃烧效率。碳氢化合物,3-10 ppm)。

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