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Biogas utilization: Experimental investigation on biogas flameless combustion in lab-scale furnace

机译:沼气利用:实验室规模炉中沼气无焰燃烧的实验研究

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摘要

Biogas generated in the anaerobic digestion of biomass and organic wastes by micro-organisms can be applied for heating, transportation and power generation as a renewable energy source. However, low calorific value (LCV) of biogas is one the most important bottlenecks of biogas conversion into electrical or thermal energy. Indeed, the presence of corrosive gases such as H_2S and water vapor in biogas components makes some dilemmas in biogas purification and utilization. In order to obtain the efficient biogas utilization method, different biogas resources, physical and chemical properties of biogas and biogas combustion characteristics should be considered. In this paper biogas was utilized in lab-scale flameless combustion furnace and the performance of flameless combustion chamber fueled by biogas has been presented. Results demonstrated that flameless combustion is one of the best feasible strategies for biogas utilization. Uniformity of temperature in the flameless furnace increases the durability of refractory and related equipment. Simplicity of the flameless burner, pollutant formation reduction and fuel consumption decreases are the main causes of biogas flameless combustion supremacy.
机译:微生物对生物质和有机废物进行厌氧消化所产生的沼气可作为可再生能源用于加热,运输和发电。但是,沼气的低热值(LCV)是沼气转化为电能或热能的最重要瓶颈之一。的确,沼气组分中存在诸如H_2S和水蒸气之类的腐蚀性气体,使沼气的净化和利用面临一些难题。为了获得有效的沼气利用方法,应考虑不同的沼气资源,沼气的理化性质和沼气燃烧特性。本文在实验室规模的无焰燃烧炉中使用沼气,并介绍了以沼气为燃料的无焰燃烧室的性能。结果表明,无焰燃烧是沼气利用的最佳可行策略之一。无焰炉中温度的均匀性提高了耐火材料及相关设备的耐用性。无焰燃烧器的简单性,污染物形成的减少和燃料消耗的减少是沼气无焰燃烧至上的主要原因。

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