会议论文详细信息
International Conference on Advances in Materials and Manufacturing Applications 2017
Comparative analysis of the Performance and Emission Characteristics of ethanol-butanol-gasoline blends
Taneja, Sumit^1 ; Singh, Perminderjit^1 ; Singh, Gurtej^1
Mechanical Engineering, PEC University of Technology, Chandigarh
160012, India^1
关键词: Brake specific fuel consumption;    Brake thermal efficiency;    Carbon monoxide emissions;    Crank angle degrees;    Ethanol blend;    Oxides of nitrogen;    Performance and emissions;    Variable compression ratio;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/310/1/012136/pdf
DOI  :  10.1088/1757-899X/310/1/012136
来源: IOP
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【 摘 要 】

Global warming and energy security being the global problems have shifted the focus of researchers on the renewable sources of energy which could replace petroleum products partially or as a whole. Ethanol and butanol are renewable sources of energy which can be produced through fermentation of biomass. A lot of research has already been done to develop suitable ethanol-gasoline blends. In contrast very little literature available on the butanol-gasoline blends. This research focuses on the comparison of ethanol-gasoline fuels with butanol-gasoline fuels with regard to the emission and performance in an SI engine. Experiments were conducted on a variable compression ratio SI engine at 1600 rpm and compression ratio 8. The experiments involved the measurement of carbon monoxide, carbon dioxide, oxides of nitrogen and unburned hydrocarbons emission and among performance parameters brake specific fuel consumption and brake thermal efficiency were recorded at three loads of 2.5kgs (25%), 5kgs (50%) and 7.5kgs (75%). Results show that ethanol and butanol content in gasoline have decreased brake specific fuel consumption, carbon monoxide and unburned hydrocarbon emissions while the brake thermal efficiency and oxides of nitrogen are increased. Results indicate thatbutanol-gasoline blends have improved brake specific fuel consumption, carbon monoxide emissions in an SI engine as compared to ethanol-gasoline blends. The carbon dioxide emissions and brake thermal efficiencies are comparable for ethanol-gasoline blends and butanol-gasoline blends. The butanol content has a more adverse effect on emissions of oxides of nitrogen than ethanol.

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