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A holistic evaluation of the impact of UK renewable strategy on emissions from compression ignition engines

机译:对英国可再生策略对压缩点火发动机排放影响的全面评价

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摘要

Reduction in fossil fuels, contributing to greenhouse gases, and improvement of air quality from vehicle emissions is of growing concern worldwide. This has led to the introduction of several binding and non-binding agreements, such as the Renewable Energy Directive to increase the renewable content of fuel for transportation, the carbon dioxide emissions standards to limit the amount of carbon dioxide emissions from vehicles and the Euro Standards to limit the amount of emissions harmful to human health in the exhaust. However, the influence of the fuel composition on hazardous exhaust emissions is a complex, and often contradictory, relationship between factors such as the fuel properties, combustion characteristics and engine load. Therefore policy implemented to improve one aspect, such as a reduction in carbon dioxide, can have a detrimental effect on another such as increased NOx emissions.This paper analyses, in a holistic manner, the impact on carbon dioxide and harmful emissions from transient compression ignition engines when increasing the renewable content of the fuel to meet the renewable energy targets. The analysis is based on a model developed from a rigorous Design of Experiment methodology used to determine the complex relationship between renewable fuel content and exhaust emissions (carbon monoxide, carbon dioxide and nitrogen oxides). Unlike other studies, the results were collected from a transient engine cycle, the World Harmonised Light vehicle Test Procedure, rather than steady state conditions, thus the results are more applicable to the real world.The results generally show that as the amount of ethanol is increased then the NOx and CO emissions decrease compared to current pump diesel. Increasing the biodiesel content generally increases the CO and CO2 emissions from the engine. For practical reasons a ternary blend is required to minimise the diesel engine emissions whilst meeting the UK's future renewable content target. A blend of B2.4E10 was found to be the optimum compromise between renewable content and engine emissions. However, for this to be achieved the UK will have to invest in second and third generation ethanol.
机译:减少化石燃料,促进温室气体,以及从车辆排放的空气质量的提高在全球范围内越来越多。这导致了几种绑定和非绑定协议的引入,例如可再生能源指令,以增加运输燃料的可再生含量,二氧化碳排放标准限制车辆的二氧化碳排放量和欧元标准限制排气中对人体健康有害的排放量。然而,燃料组合物对危险废气排放的影响是一种复杂的,并且通常是矛盾的,燃料特性,燃烧特性和发动机负荷等因素之间的关系。因此,实施以改善一个方面的政策,例如减少二氧化碳,可能对另一个的不利影响,例如Nox排放增加。本文以整体的方式分析,对二氧化碳的影响和来自瞬态压缩点火的有害排放发动机在增加燃料的可再生含量以满足可再生能源目标时。该分析基于从用于确定可再生燃料含量和排气排放(一氧化碳,二氧化碳和氮氧化物)之间的严格设计的实验方法设计的模型。与其他研究不同,结果是从瞬态发动机循环中收集的,而世界统一的轻型车辆测试程序,而不是稳态的条件,因此结果更适用于现实世界。结果普遍表明,随着乙醇的量与电流泵柴油相比,NOx和CO排放量增加。增加生物柴油含量通常会增加来自发动机的CO和CO2排放。出于实际原因,需要三元共混物来最小化柴油发动机排放,同时满足英国未来的可再生内容目标。发现B2.4E10的混合物是可再生内容和发动机排放之间的最佳折衷。然而,为了实现这一目标,英国必须投资第二代和第三代乙醇。

著录项

  • 来源
    《Fuel》 |2020年第jul1期|117586.1-117586.7|共7页
  • 作者

    van Niekerk A. S.; Kay P. J.;

  • 作者单位

    Univ West England Coldharbour Lane Bristol BS16 1QY Avon England;

    Univ West England Coldharbour Lane Bristol BS16 1QY Avon England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodiesel; Ethanol; Emissions; NOx; CO2;

    机译:生物柴油;乙醇;排放;NOx;二氧化碳;

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