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首页> 外文期刊>Journal of the air & waste management association >Regulated and unregulated emissions from modern 2010 emissions-compliant heavy-duty on-highway diesel engines
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Regulated and unregulated emissions from modern 2010 emissions-compliant heavy-duty on-highway diesel engines

机译:来自符合2010年排放标准的重型公路柴油发动机的受控和非受控排放

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摘要

The U.S. Environmental Protection Agency (EPA) established strict regulations for highway diesel engine exhaust emissions of particulate matter (PM) and nitrogen oxides (NO_x) to aid in meeting the National Ambient Air Quality Standards. The emission standards were phased in with stringent standards for 2007 model year (MY) heavy-duty engines (HDEs), and even more stringent NO_x standards for 2010 and later model years. The Health Effects Institute, in cooperation with the Coordinating Research Council, funded by government and the private sector, designed and conducted a research program, the Advanced Collaborative Emission Study (ACES), with multiple objectives, including detailed characterization of the emissions from both 2007- and 2010-compliant engines. The results from emission testing of 2007-compliant engines have already been reported in a previous publication. This paper reports the emissions testing results for three heavy-duty 2010-compliant engines intended for on-highway use. These engines were equipped with an exhaust diesel oxidation catalyst (DOC), high-efficiency catalyzed diesel particle filter (DPF), urea-based selective catalytic reduction catalyst (SCR), and ammonia slip catalyst (AMOX), and were fueled with ultra-low-sulfur diesel fuel (~6.5 ppm sulfur). Average regulated and unregulated emissions of more than 780 chemical species were characterized in engine exhaust under transient engine operation using the Federal Test Procedure cycle and a 16-hr duty cycle representing a wide dynamic range of real-world engine operation. The 2010 engines' regulated emissions of PM, NO_x, nonmethane hydrocarbons, and carbon monoxide were all well below the EPA 2010 emission standards. Moreover, the unregulated emissions of polycyclic aromatic hydrocarbons (PAHs), nitroPAHs, hopanes and steranes, alcohols and organic acids, alkanes, carbonyls, dioxins and furans, inorganic ions, metals and elements, elemental carbon, and particle number were substantially (90 to >99%) lower than pre-2007-technology engine emissions, and also substantially (46 to >99%) lower than the 2007-technology engine emissions characterized in the previous study. Implications: Heavy-duty on-highway diesel engines equipped with DOC/DPF/SCR/AMOX and fueled with ultra-low-sulfur diesel fuel produced lower emissions than the stringent 2010 emission standards established by the U.S. Environmental Protection Agency. They also resulted in significant reductions in a wide range of unregulated toxic emission compounds relative to older technology engines. The increased use of newer technology (2010+) diesel engines in the on-highway sector and the adaptation of such technology by other sectors such as nonroad, displacing older, higher emissions engines, will have a positive impact on ambient levels of PM, NO_x, and volatile organic compounds, in addition to many other toxic compounds.
机译:美国环境保护署(EPA)对公路柴油机废气中的颗粒物(PM)和氮氧化物(NO_x)排放制定了严格的规定,以帮助达到国家环境空气质量标准。排放标准逐步采用了2007车型年(MY)重型发动机(HDE)的严格标准,甚至采用了2010年及以后车型年份的更严格的NO_x标准。由政府和私营部门资助的健康影响研究院与协调研究委员会合作,设计并实施了一项研究计划,即“先进协作排放研究”(ACES),其目标包括多个目标,包括2007年的排放的详细表征-和2010兼容的引擎。在以前的出版物中已经报告了2007年兼容发动机的排放测试结果。本文报告了三种公路用重型发动机(符合2010年标准)的排放测试结果。这些发动机配备了排气柴油氧化催化剂(DOC),高效催化柴油颗粒过滤器(DPF),尿素基选择性催化还原催化剂(SCR)和氨泄漏催化剂(AMOX),并以超低硫柴油(硫含量约6.5 ppm)。在瞬态发动机运转下,使用联邦测试程序循环和16小时工作循环(代表实际发动机运转的广泛动态范围)在发动机排气中表征了超过780种化学物质的平均调节和不调节排放。 2010年发动机的PM,NO_x,非甲烷碳氢化合物和一氧化碳的规定排放量均远低于EPA 2010排放标准。此外,多环芳烃(PAH),硝基PAH,hop烷和甾烷,醇和有机酸,烷烃,羰基,二恶英和呋喃,无机离子,金属和元素,元素碳和颗粒数的不受管制排放量基本上为(90至比2007年以前的技术排放量降低> 99%),也比先前研究中的2007年技术的排放量低很多(46至> 99%)。含义:配备DOC / DPF / SCR / AMOX并使用超低硫柴油燃料的重型公路柴油发动机的排放量低于美国环境保护署制定的严格的2010年排放标准。与较旧的技术引擎相比,它们还大大减少了各种不受管制的有毒排放化合物。公路领域中使用新技术(2010年以上)的柴油发动机的增加使用以及其他行业(例如非公路用)对此类技术的适应,取代旧的,排放量更高的发动机,将对环境中的PM,NO_x产生积极影响以及挥发性有机化合物,以及许多其他有毒化合物。

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