首页> 外文会议>ES2011;International conference on energy sustainability >DEVELOPMENT OF BIO-MASS FUEL FOR SMALL DISPLACEMENT ENGINE TO REDUCE CO_2 : FEASIBILITY OF DISPOSED ALCOHOLIC BEVERAGES AS BIO-MASS SOURCE
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DEVELOPMENT OF BIO-MASS FUEL FOR SMALL DISPLACEMENT ENGINE TO REDUCE CO_2 : FEASIBILITY OF DISPOSED ALCOHOLIC BEVERAGES AS BIO-MASS SOURCE

机译:开发用于小排量发动机以减少CO_2的生物质燃料:处置含酒精饮料作为生物质源的可行性

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This study deals with bio-ethanol distilled from disposed alcoholic beverages. Through the various experiments while using a small displacement engine which is equipped with electric fuel injection (E.F.I.) system, the feasibility of the disposed alcoholic beverages; leftover-beer is investigated as one of the bio-mass sources. Currently bio-masses are classified into the following seven bio-mass sources, livestock excreta, sewage sludge, human waste sludge, waste of food, agricultural residue, wood-based (wood chips) bio-mass and crops. In those bio-mass sources, the authors pay their attention to the amount of leftover-beer after a banquet. Our investigation clarifies that about 12 1 of beer is left and disposed after a banquet of 150 people. Since beer contains 5 % alcohols, 600 cc of ethanol can be obtained without fermentation process. Thus in order to obtain alcohol as a fuel, in collaboration with some hotels, leftover-beer is collected. As to a fuel, higher concentration of distilled alcoholic beverages is preferable. Therefore a new double distillation system is developed to separate water, and 85.9 % bio-ethanol fuel is produced from 5 % alcoholic density of leftover-beer. The ethanol evaporation characteristic of this bio-ethanol is investigated, it is equal to 98 % ethanol reagent. This showed that it can be mixed with gasoline. Also, in order to confirm its performance as a fuel, the obtained ethanol is experimented with 121 cc of small displacement engine which is equipped with E.F.I, system. The results of this experiment are compared to unleaded gasoline and showed that it has the same performance of engine power, especially in case of before top dead center (B.T.D.C.) 15.0 deg.. We also calculated the volume of CO_2 emission discharged in distilled ethanol under driving conditions B.T.D.C. 15.0 deg., 4000 rpm, for 1 hour. The CO_2 production of distilled ethanol is 34.4 kgCO_2, on the other hand, CO_2 production of unleaded gasoline is 2.82 kgCO_2. This result shows that the system with high energy efficiency to separate ethanol and water is desired. Furthermore, the density of acetaldehyde from exhaust gas is analyzed. An extremely low reading of 28 ppm is obtained. The results prove the effect of acetaldehyde to the human body is negligible. Finally, employing 50 cc motorcycles with our developed E.F.I, system, experiment with bio-mass ethanol is executed. The results proved the feasibility of our developed bio-ethanol can be a new low emission bio-mass source.
机译:这项研究涉及从废弃酒精饮料中蒸馏出的生物乙醇。通过使用装有电动燃油喷射(E.F.I.)系统的小排量发动机的各种实验,可以处理含酒精的饮料。剩余啤酒被研究为生物量来源之一。目前,生物质可分为以下七个生物质来源:牲畜排泄物,污水污泥,人类废物污泥,食物浪费,农业残留物,木质(木屑)生物质和农作物。在这些生物质资源中,作者关注宴会后的剩余啤酒量。我们的调查表明,经过150人的宴会,大约剩下12 1啤酒被丢弃。由于啤酒中酒精含量为5%,因此无需发酵即可获得600 cc的乙醇。因此,为了获得酒精作为燃料,与一些酒店合作,收集了剩余的啤酒。至于燃料,优选较高浓度的蒸馏酒精饮料。因此,开发了一种新的双蒸馏系统以分离水,并且由5%的剩余啤酒酒精密度生产85.9%的生物乙醇燃料。研究了该生物乙醇的乙醇蒸发特性,它等于98%的乙醇试剂。这表明它可以与汽油混合。另外,为了确认其作为燃料的性能,将得到的乙醇用装备有E.F.I系统的121cc小排量发动机进行实验。该实验的结果与无铅汽油进行了比较,表明该汽油具有相同的发动机功率,尤其是在上死点(BTDC)15.0度之前的情况下。我们还计算了在蒸馏乙醇下的CO_2排放量驾驶条件BTDC 15.0度,4000 rpm,持续1小时。蒸馏乙醇的CO_2产量为34.4 kgCO_2,而无铅汽油的CO_2产量为2.82 kgCO_2。该结果表明,需要具有高能效的分离乙醇和水的系统。此外,分析了废气中乙醛的密度。获得的读数极低,为28 ppm。结果证明乙醛对人体的影响可忽略不计。最后,在我们开发的E.F.I系统中使用50 cc摩托车,对生物质乙醇进行了实验。结果证明了我们开发的生物乙醇可以作为一种新的低排放生物质来源的可行性。

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