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LFG控制利用工程基本参数的试验研究 被引量:6
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作者 黎青松 郭祥信 梁顺文 《城市环境与城市生态》 CAS CSSCI CSCD 1999年第5期11-13,共3页
通过深圳市玉龙坑垃圾填埋场的现场抽气试验,本文进行了填埋气体安全控制与回收利用工程基本参数的研究。研究结果表明,抽气流量小于3 m3/min 时能控制所抽填埋气体中氧含量小于2 % ,抽气流量Q 与抽气井口压力P 的关系为... 通过深圳市玉龙坑垃圾填埋场的现场抽气试验,本文进行了填埋气体安全控制与回收利用工程基本参数的研究。研究结果表明,抽气流量小于3 m3/min 时能控制所抽填埋气体中氧含量小于2 % ,抽气流量Q 与抽气井口压力P 的关系为Q= 1 .15Ln P- 3 .283 。填埋场垃圾中有机质含量较多,目前正处于产气高峰期,填埋气体成分分别为CH4 :62 .2 % ,O2 :1 .0 % ,CO2 :34 .7 % ,其余:2 .1 % 。其中CH4 含量较高,填埋气体具有很高的利用价值。抽气和产气达到平衡时,抽气井的作用半径为28 m ,相应的稳定抽气流量为2 .35 m3/min 。 展开更多
关键词 城市 生活垃圾 埋场气体 LFG控制
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Combustion of Renewable Biogas Fuels
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作者 Chaouki Ghenai Isam Janajreh 《Journal of Energy and Power Engineering》 2015年第10期831-843,共13页
Biogas fuel is a sustainable and renewable fuel produced from anaerobic digestion of organic matter. The biogas fuel is a flammable mixture of methane and carbon dioxide with low to medium calorific values. Biogas is ... Biogas fuel is a sustainable and renewable fuel produced from anaerobic digestion of organic matter. The biogas fuel is a flammable mixture of methane and carbon dioxide with low to medium calorific values. Biogas is an alternative to conventional fossil fuels and can be used for beating, transportation and power generation. CFD (computational fluid dynamic) analysis of the combustion performance and emissions of biogas fuel in gas turbine engines is presented in this study. The main objective of this study is to understand the impact of the variability in the biogas fuel compositions and lower heating values on the combustion process. Natural gas, biogas from anaerobic digester, landfill biogas, and natural gas/biogas mixture fuels combustion were investigated in this study. The CFD results show lower peak flame temperature and CO mole fractions inside the combustor and lower NOx emissions at the combustor exit for the biogas compared to natural gas fuel. The peak flame temperature decreases by 37% for the biogas landfill (COJCH4 = 0.89) and by 22% for the biogas anaerobic digester (CO2/CH4 = 0.54) compared to natural gas fuel combustion. The peak CO mole fraction inside the combustor decreases from 9.8 × 10-2 for natural gas fuel to 2.22 × 10-4 for biogas anaerobic digester and 1.32 × 10-7 for biogas landfill. The average NOx mole fraction at the combustor exit decreases from 1.13 × 10-5 for natural gas fuel to 0.40 × 10-6 for biogas anaerobic digester and 1.06 × 10-6 for biogas landfill. The presence of non-combustible constituents in the biogas reduces the temperature of the flame and consequently the NOx emissions. 展开更多
关键词 Anaerobic digestion BIOGAS non-premixed combustion NOx emissions CFD.
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