期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
直喷氢内燃机实现NO_(x)近零排放的试验研究 被引量:11
1
作者 包凌志 孙柏刚 汪熙 《汽车安全与节能学报》 CAS CSCD 北大核心 2021年第2期257-264,共8页
缸内混合气分布不均匀、燃烧温度高等原因,直喷氢内燃机的氮氧排放水平很高。为探索降低直喷氢内燃机NO_(x)排放的控制方法,该文基于一台2.0 L自然吸气直喷氢内燃机,通过试验研究了过量空气系数、转速、点火角和喷氢压力对NO_(x)排放的... 缸内混合气分布不均匀、燃烧温度高等原因,直喷氢内燃机的氮氧排放水平很高。为探索降低直喷氢内燃机NO_(x)排放的控制方法,该文基于一台2.0 L自然吸气直喷氢内燃机,通过试验研究了过量空气系数、转速、点火角和喷氢压力对NO_(x)排放的影响,并通过多参数的耦合调节,控制NO_(x)排放,得到了样机的最大动力性下,未经后处理就实现近零排放(NO_(x)≤20×10^(-6))工作边界。研究表明:通过稀燃和推迟点火角,可以在牺牲少量热效率和燃烧稳定性的同时大幅降低NO_(x)排放;近零排放工作区域的最大功率为21.5 kW,最高热效率为39%,在此区域内的所有工况点都可以实现近零排放。 展开更多
关键词 直喷氢内燃机 氮氧排放 排放控制 近零排放
在线阅读 下载PDF
Biomass gasification and Polish coal-fired boilers for process of reburning in small boilers 被引量:7
2
作者 Hrycko Piotr Lasek Janusz Matuszek Katarzyna 《Journal of Central South University》 SCIE EI CAS 2013年第6期1623-1630,共8页
Reburning was applied to Polish automatic coal-fired retort boiler (25 kW).The use of bio-syngas reduced NOx emissions from the boiler by over 25%,below the significant level of 200 mg/m3 .Reburning was carried out us... Reburning was applied to Polish automatic coal-fired retort boiler (25 kW).The use of bio-syngas reduced NOx emissions from the boiler by over 25%,below the significant level of 200 mg/m3 .Reburning was carried out using an integrated system consisting of the boiler and a fixed-bed 60 kW (GazEla) gasification reactor.The process gas was continuously introduced above the coal burner of the boiler.The process parameters of the boiler and the gasifier were also measured and compared with the other units.Characteristic NOx emissions from automatic and manually operated boilers were also presented. 展开更多
关键词 NOx rebuming coal combustion biomass gasification
在线阅读 下载PDF
Effect of exhaust gas recirculation and intake pre-heating on performance and emission characteristics of dual fuel engines at part loads 被引量:6
3
作者 A.Paykani R.Khoshbakhti Saray +1 位作者 M.T.Shervani-Tabar A.Mohammadi-Kousha 《Journal of Central South University》 SCIE EI CAS 2012年第5期1346-1352,共7页
Achieving simultaneous reduction of NOx,CO and unburned hydrocarbon(UHC) emissions without compromising engine performance at part loads is the current focus of dual fuel engine research.The present work focuses on an... Achieving simultaneous reduction of NOx,CO and unburned hydrocarbon(UHC) emissions without compromising engine performance at part loads is the current focus of dual fuel engine research.The present work focuses on an experimental investigation conducted on a dual fuel(diesel-natural gas) engine to examine the simultaneous effect of inlet air pre-heating and exhaust gas recirculation(EGR) ratio on performance and emission characteristics at part loads.The use of EGR at high levels seems to be unable to improve the engine performance at part loads.However,it is shown that EGR combined with pre-heating of inlet air can slightly increase thermal efficiency,resulting in reduced levels of both unburned hydrocarbon and NOx emissions.CO and UHC emissions are reduced by 24% and 31%,respectively,The NOx emissions decrease by 21% because of the lower combustion temperature due to the much inert gas brought by EGR and decreased oxygen concentration in the cylinder. 展开更多
关键词 dual fuel engine exhaust gas recirculation (EGR) EMISSION performance venturi EGR system
在线阅读 下载PDF
Thermo economic evaluation of oxy fuel combustion cycle in Kazeroon power plant considering enhanced oil recovery revenues 被引量:1
4
作者 Ehsan Torabnejad Ramin Haghighi-Khoshkhoo Niloufar Sarabchi 《Journal of Central South University》 SCIE EI CAS 2014年第3期1025-1033,共9页
Oxy fuel combustion and conventional cycle(currently working cycle) in Kazeroon plant are modeled using commercial thermodynamic modeling software. Economic evaluation of the two models regarding the resources of tran... Oxy fuel combustion and conventional cycle(currently working cycle) in Kazeroon plant are modeled using commercial thermodynamic modeling software. Economic evaluation of the two models regarding the resources of transport and injection of carbon dioxide into oil fields at Gachsaran for enhanced oil recovery in the various oil price indices is conducted and indices net present value(NPV) and internal rate of return on investment(IRR) are calculated. The results of the two models reveal that gross efficiency of the oxy fuel cycle is more than reference cycle(62% compared to 49.03%), but the net efficiency is less(41.85% compared to 47.92%) because of the high-energy consumption of the components, particularly air separation unit(ASU) in the oxy fuel cycle. In this model, pure carbon dioxide with pressure of 20×105 Pa and purity of 96.84% was captured. NOX emissions also decrease by 4289.7 tons per year due to separation of nitrogen in ASU. In this model, none of the components of oxy fuel cycle is a major engineering challenge. With increasing oil price, economic justification of oxy fuel combustion model increases. With the price of oil at $ 80 per barrel in mind and $ 31 per ton fines for emissions of carbon dioxide in the atmosphere, IRR is the same for both models. 展开更多
关键词 oxy fuel combustion: C02 capture combined cycle enhanced oil recovery NOx reduction
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部