首页> 外文期刊>Applied Engineering in Agriculture >METHANE/GASOLINE BI-FUEL ENGINES AS A POWER SOURCE FOR STANDARD AGRICULTURE TRACTORS: DEVELOPMENT AND TESTING ACTIVITIES
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METHANE/GASOLINE BI-FUEL ENGINES AS A POWER SOURCE FOR STANDARD AGRICULTURE TRACTORS: DEVELOPMENT AND TESTING ACTIVITIES

机译:甲烷/汽油双燃料发动机作为标准农业拖拉机的电源:开发和测试活动

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摘要

Promoting energy efficiency in agriculture means supporting economic growth by reducing both pollution and greenhouse gas (GHG) emissions while minimizing waste and the inefficient use of natural resources. Biomethane presents an interesting option given its possibility to be produced from livestock waste or other organic residues, with GHG emission savings ranging from 84% to 86% (wet or dry manure). Moreover, experiences with methane-fueled engines are widely available, thus leading to considering the possibility of using such a fuel in the agricultural sector as well. The aim of this research was to develop a first-generation tractor prototype provided with a commercially available bi-fuel engine adapted for the purpose and tested both in laboratory and field conditions. The main design aspects are depicted while the performance results show similar values of engine power and torque (87 kW maximum power for the diesel fuel tractor and 88 kW for the methane-fueled version; 1172 Nm maximum torque at 550 min(-1) for the methane and 1155 Nm at 400 min(-1) for the diesel tractor) with an autonomy of the methane prototype which is, at present, 40% of a comparable standard tractor. The possible role in farm fleet is also presented.
机译:通过减少污染和温室气体(GHG)排放,在最小化废物和自然资源的低效使用,促进农业能源效率。鉴于其可能由牲畜废物或其他有机残留物生产,生物甲烷提出了一个有趣的选择,GHG排放节省的84%至86%(湿润或干粪)。此外,甲烷燃料发动机的经验广泛可用,从而考虑了在农业领域中使用这种燃料的可能性。该研究的目的是开发一种第一代拖拉机原型,该原型具有用于该目的的市售双燃料发动机,并在实验室和现场条件下测试。在主要设计方面被描述,而性能结果显示出类似的发动机电源和扭矩值(柴油燃料拖拉机的87 kW最大功率,88 kW用于甲烷燃料的版本;在550分钟(-1)时,最大扭矩为1172nm甲烷和1155nm为柴油拖拉机的400分钟(-1)),具有甲烷原型的自主性,目前为40%的可比标准拖拉机。还提出了农场舰队中可能的作用。

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