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A review of ammonia as a compression ignition engine fuel

机译:氨作为压燃式发动机燃料的综述

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During the past decades, the diesel engine has been through times of upheaval, boom and bust. At the beginning of the century, almost 50% of the new vehicle registrations in the European market were diesel-powered. However, the news of deadly diesel NO. emissions supported by the diesel emission scandals caused a shock to the diesel engine market, and the sustainability of the diesel engine is currently in dispute.Recently major automotive manufacturers announced the development of diesel powered vehicles with negligible NOx, emissions. Moreover, the NOx emissions production is of lower concern for heavy-duty, marine or power generations applications where the implementation of advanced aftertreatment systems is feasible. However, despite the tackle of NOx emissions, the decarbonisation of the automotive, marine and power generation markets is mandatory for meeting greenhouse gas emissions targets and limiting global warming.The decarbonisation of the diesel engine can be achieved by the implementation of a carbon-free fuel such as ammonia. This paper provides a detailed overview of ammonia as a fuel for compression ignition engines. Ammonia can be combusted with diesel or any other lower autoignition temperature fuel in dual-fuel mode and lead to a significant reduction of carbon-based emissions. The development of advanced injection strategies can contribute to enhanced performance and overall emissions improvement. However, ammonia dual-fuel combustion currently suffers from relatively high unburned ammonia and NOx, emissions because of the fuel-bound nitrogen. Therefore, the implementation of aftertreatment systems is required. Hence, ammonia as a compression ignition fuel can be currently seen as a feasible solution only for marine, power generation and possibly heavy-duty applications where no significant space constraints exist. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在过去的几十年中,柴油发动机经历了动荡,繁荣和萧条的时期。在本世纪初,欧洲市场上将近50%的新车注册是柴油动力的。然而,致命的柴油的消息没有。柴油机排放丑闻造成的尾气排放震惊了柴油机市场,并且目前对柴油机的可持续性存有争议。最近的主要汽车制造商宣布开发出氮氧化物排放可忽略不计的柴油动力汽车。此外,对于可以实施先进的后处理系统的重型,海洋或发电应用而言,NOx排放的产生问题较少。然而,尽管解决了NOx排放问题,但汽车,船舶和发电市场的脱碳对于实现温室气体排放目标和限制全球变暖是必不可少的。柴油发动机的脱碳可以通过实施无碳排放来实现。燃料,例如氨。本文详细介绍了氨气作为压缩点火发动机的燃料。氨气可以在双燃料模式下与柴油或任何其他较低自燃温度的燃料燃烧,从而显着减少碳基排放。先进的喷射策略的发展可以有助于提高性能并改善总体排放。然而,由于燃料结合氮,氨双燃料燃烧当前遭受相对较高的未燃烧氨和NOx排放。因此,需要实施后处理系统。因此,氨作为压缩点火燃料目前仅在不存在明显空间限制的船舶,发电以及可能的重型应用中才被视为可行的解决方案。 (C)2020 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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