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The impact of tribology on energy use and CO2 emission globally and in combustion engine and electric cars

机译:摩擦学对全球能源和二氧化碳排放的影响及燃烧发动机和电动汽车的影响

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Growing concerns over energy and environmental sustainability have lately sparked worldwide interest in more efficient and cleaner transportation systems and industrial activities. Friction roughly consumes one-fifth of all energy used worldwide. One-third of all energy used in transportation goes to overcome friction. At the same time, the fruits of decades of dedicated research on all-electric vehicles powered by advanced batteries are paving the way toward a much cleaner and sustainable transportation future. In this article, we provide a short overview of what are the energy efficiency and environmental impacts of current transportation, industrial, and residential systems and how much of that efficiency is adversely affected by friction and wear losses in moving mechanical parts and components. We also touch upon recent advances in new materials, lubricants, and design changes that could reduce energy losses by 18-40%, mainly resulting from friction and wear. The savings would be up to 8.7% of the total global energy use and 1.4% of the gross national products (GNP). Finally, we calculate the energy consumption and friction losses in battery-powered electric passenger cars and show the benefit of electric cars where the total energy use is in average 3.4 times lower compared to combustion engine powered cars. The CO2 emissions are 4.5 times higher for a combustion engine car compared to an electric car when the electricity comes from renewable energy sources. Moving from fossil to renewable energy sources may cut down the energy losses due to friction in energy production by more than 60%.
机译:对能源和环境可持续性的日益令人担忧最近引发了全球对更有效和更清洁的运输系统和工业活动的兴趣。摩擦大致消耗全球所有能源的五分之一。运输中使用的所有能量的三分之一来克服摩擦。与此同时,几十年的专用研究对先进电池供电的全电动汽车的研究正在为更清洁和可持续的运输未来铺平道路。在本文中,我们简要概述了当前运输,工业和住宅系统的能源效率和环境影响以及在移动机械零件和部件中受到摩擦和磨损损失的不利影响。我们还致力于最近的新材料,润滑剂和设计变化的进步,可以将能量损失降低18-40%,主要由摩擦和磨损导致。储蓄占全球总能源总量的8.7%,占国民生产总值(GNP)的1.4%。最后,我们计算电池供电的电动乘用车中的能量消耗和摩擦损失,并显示电动汽车的益处,与燃烧发动机动力汽车相比,总能源使用平均水平平均为3.4倍。当电力来自可再生能源时,CO 2排放量为燃烧发动机车辆与电动汽车相比的4.5倍。从化石转向可再生能源可能会降低能量损失,因为能量产量摩擦超过60%。

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