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首页> 外文期刊>Journal of combustion >Combustion of Biogas Released from Palm Oil Mill Effluent and the Effects of Hydrogen Enrichment on the Characteristics of the Biogas Flame
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Combustion of Biogas Released from Palm Oil Mill Effluent and the Effects of Hydrogen Enrichment on the Characteristics of the Biogas Flame

机译:棕榈油厂废水排放的沼气燃烧及富氢对沼气火焰特性的影响

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摘要

Biogas released from palm oil mill effluent (POME) could be a source of air pollution, which has illustrated negative effects on the global warming. To protect the environment from toxic emissions and use the energy of POME biogas, POME is conducted to the closed digestion systems and released biogas is captured. Since POME biogas upgrading is a complicated process, it is not economical and thus new combustion techniques should be examined. In this paper, POME biogas (40% CO2and 60% CH4) has been utilized as a fuel in a lab-scale furnace. A computational approach by standardk-εcombustion and turbulence model is applied. Hydrogen is added to the biogas components and the impacts of hydrogen enrichment on the temperature distribution, flame stability, and pollutant formation are studied. The results confirm that adding hydrogen to the POME biogas content could improve low calorific value (LCV) of biogas and increases the stability of the POME biogas flame. Indeed, the biogas flame length rises and distribution of the temperature within the chamber is uniform when hydrogen is added to the POME biogas composition. Compared to the pure biogas combustion, thermal NOxformation increases in hydrogen-enriched POME biogas combustion due to the enhancement of the furnace temperature.
机译:棕榈油厂废水(POME)释放的沼气可能是空气污染的来源,这说明了对全球变暖的负面影响。为了保护环境免受有毒物质排放并利用POME沼气的能量,POME被引导至封闭的消化系统,并捕获释放的沼气。由于POME沼气的升级是一个复杂的过程,因此不经济,因此应研究新的燃烧技术。在本文中,POME沼气(40%CO2和60%CH4)已被用作实验室规模的熔炉的燃料。采用了标准的ε-燃烧和湍流模型的计算方法。将氢气添加到沼气成分中,研究了氢气富集对温度分布,火焰稳定性和污染物形成的影响。结果证实,将氢气添加到POME沼气中可以改善沼气的低热值(LCV),并增加POME沼气火焰的稳定性。实际上,当将氢添加到POME沼气组合物中时,沼气火焰长度增加并且室内温度分布均匀。与纯沼气燃烧相比,由于炉温的升高,富氢POME沼气燃烧的热NOx形成增加。

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