首页> 外文期刊>Energy >Exhaust emissions and performance of ternary iso-butanol-bio- methanol-gasoline and n-butanol-bio-ethanol-gasoline fuel blends in spark-ignition engines: Assessment and comparison
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Exhaust emissions and performance of ternary iso-butanol-bio- methanol-gasoline and n-butanol-bio-ethanol-gasoline fuel blends in spark-ignition engines: Assessment and comparison

机译:火花点火发动机中异丁醇-生物甲醇-汽油和正丁醇-生物乙醇-汽油的混合燃料的排放和性能:评估和比较

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For the past few years, the energy-intensive renewable fuels are introduced to solve our depleted fossil fuels, power and/or clean air requirements. In view of that, in the current study a couple of new ternary blended fuels in renewable bases is examined, for the first time in the internal combustion engines, as possible alternatives of fossil fuels. Bio-methanol was mixed with iso-butanol and gasoline in one blended fuel (iBM), and bio-ethanol was mixed with n-butanol and gasoline in the other one (nBE) at rates 3–10 vol% biofuels. The two ternary blended fuels were compared with each others as well as with the neat gasoline for the fuel energy efficiencies and pollutant emissions in a gasoline-fueled engine. The fuel energy efficiencies include output torque (Torq), brake power (BP), volumetric efficiency (VE), in-cylinder pressure (ICP) and exhaust gas temperature (EGT), while the pollutant emissions include CO, CO2and UHC (unburned hydrocarbons). Experimental results indicated that the two tested fuel blends can achieve the goal of more green sustainability, as compared to conventional neat gasoline fuel. The superior engine emissions were presented by iBM fuel blends, which imply 31%, 19% and 32% lower than the CO, CO2and UHC emissions of neat gasoline. However, there are slight advantages on engine performance at using neat gasoline than the iBM and nBM ternary fuel blends. The study also indicated that the addition of iso-butanol–bio-methanol to gasoline results a higher engine performance than the addition of n-butanol–bio-ethanol to gasoline by about 0.9%, 6.2%, 2.6 and 1.47%, for EGT, ICP, BP and Torq, respectively. The nBE blended fuel showed a small descend in engine performance, compared to neat gasoline, by about 2.4%, 3.4%, 5%, 5.2% and 1.9% for VE, EGT, ICP, BP and Torq, respectively.
机译:在过去的几年中,引入了能源密集型可再生燃料,以解决我们耗尽的化石燃料,电力和/或清洁空气的需求。有鉴于此,在本研究中,首次在内燃机中研究了可再生碱中的几种新的三元混合燃料,作为化石燃料的可能替代品。在一种混合燃料(iBM)中将生物甲醇与异丁醇和汽油混合,在另一种混合燃料(nBE)中将生物乙醇与正丁醇和汽油混合,比例为3-10%vol%生物燃料。将两种三元混合燃料以及纯汽油与汽油发动机的燃料效率和污染物排放进行了比较。燃料能效包括输出扭矩(Torq),制动功率(BP),容积效率(VE),缸内压力(ICP)和废气温度(EGT),而污染物排放包括CO,CO2和UHC(未燃烧的碳氢化合物) )。实验结果表明,与传统的纯汽油燃料相比,这两种经过测试的混合燃料可以实现绿色可持续发展的目标。 iBM燃料混合物表现出优异的发动机排放,比纯汽油的CO,CO2和UHC排放分别低31%,19%和32%。但是,使用纯汽油的发动机性能比iBM和nBM三元混合燃料略有优势。研究还表明,对于汽油,向汽油中添加异丁醇-生物甲醇比向汽油中添加正丁醇-生物乙醇的发动机性能高出约0.9%,6.2%,2.6和1.47%。 ,ICP,BP和Torq。与纯汽油相比,nBE混合燃料的发动机性能略有下降,VE,EGT,ICP,BP和Torq分别降低了约2.4%,3.4%,5%,5.2%和1.9%。

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