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首页> 外文期刊>Atmospheric environment >Emission profile of 18 carbonyl compounds, CO, CO_2, and NO_x. emitted by a diesel engine fuelled with diesel and ternary blends con-taining diesel, ethanol and biodiesel or vegetable oils
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Emission profile of 18 carbonyl compounds, CO, CO_2, and NO_x. emitted by a diesel engine fuelled with diesel and ternary blends con-taining diesel, ethanol and biodiesel or vegetable oils

机译:18种羰基化合物,CO,CO_2和NO_x的排放曲线。由包含柴油,乙醇和生物柴油或植物油的柴油和三元混合物燃料的柴油发动机排放的

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摘要

The impact of vehicular emissions on air depends, among other factors, on the composition of fuel and the technology used to build the engines. The reduction of vehicular emissions requires changes in the fuel composition, and improving the technologies used in the manufacturing of engines and for the after-treatment of gases. In general, improvements to diesel engines have targeted not only emission reductions, but also reductions in fuel consumption. However, changes in the fuel composition have been shown to be a more rapid and effective alternative to reduce pollution. Some factors should been taken into consideration when searching for an alternative fuel to be used in diesel engines, such as emissions, fuel stability, availability and its distribution, as well as its effects on the engine durability. In this work, 45 fuel blends were prepared and their stability was evaluated. The following mixtures (v/v/v) were stable for the 90-day period and were used in the emission study: diesel/ethanol - 90/10%, diesel/ ethanol/soybean biodiesel - 80/15/5%, diesel/ethanol/castor biodiesel - 80/15/5%, diesel/ethanol/residual biodiesel - 80/15/5%, diesel/ethanol/soybean oil - 90/7/3%, and diesel/ethanol/castor oil - 90/7/3%. The diesel/ethanol fuel showed higher reduction of NO_x emission at a lower load (2 kW) when compared with pure diesel. The other fuels showed a decrease of NO_x emissions in the ranges of 6.9-75% and 4-85% at 1800 rpm and 2000 rpm, respectively. The combustion efficiencies of the diesel can be enhanced by the addition of the oxygenate fuels, like ethanol and biodiesel/vegetable oil, resulting in a more complete combustion in terms of NO_x emission. In the case of CO_2 the decreases were in the ranges of 5-24% and 4-6% at 1800 rpm and 2000 rpm, respectively. Meanwhile, no differences were observed in CO emission. The carbonyl compounds (CC) studied were formaldehyde, acetaldehyde, propionaldehyde, acrolein, acetone, crotonaldehyde, butyraldehyde, butanone, benzaldehyde, isovaleraldehyde, valeraldehyde, o-toluenaldehyde, m-toluenaldehyde, p-toluenaldehyde, hexaldehyde, octaldehyde, 2,5-dimethyl-benzaldehyde, and decaldehyde. Among them, formaldehyde, acetaldehyde, acetone, and propionaldehyde showed the highest emission concentrations. When ternary blend contains vegetable oil, there is a strong tendency to increase the emissions of the high weight CC and decrease the emissions of the low weight CC. The highest concentration of acrolein was observed when the fuel contains diesel, ethanol and biodiesel. With the exception of NO_x, the use of ternary blended fuels resulted on the increase in the emission rates of the studied compounds.
机译:车辆排放物对空气的影响除其他因素外,还取决于燃料的成分和用于制造发动机的技术。减少车辆排放物需要改变燃料成分,并改善用于发动机制造和气体后处理的技术。通常,对柴油发动机的改进不仅以减少排放为目标,而且还以减少燃料消耗为目标。然而,已经证明改变燃料成分是减少污染的更快速和有效的替代方法。在寻找柴油发动机中使用的替代燃料时,应考虑一些因素,例如排放,燃料稳定性,可利用性及其分布以及对发动机耐用性的影响。在这项工作中,制备了45种混合燃料并评估了其稳定性。以下混合物(v / v / v)在90天的时间内稳定,并用于排放研究:柴油/乙醇-90/10%,柴油/乙醇/大豆生物柴油-80/15/5%,柴油/乙醇/蓖麻生物柴油-80/15/5%,柴油/乙醇/残留生物柴油-80/15/5%,柴油/乙醇/大豆油-90/7/3%和柴油/乙醇/蓖麻油-90 / 7/3%。与纯柴油相比,柴油/乙醇燃料在较低负载(2 kW)下显示出更高的NO_x排放降低。其他燃料在1800 rpm和2000 rpm时分别显示出6.9-75%和4-85%的NO_x排放降低。通过添加含氧燃料,例如乙醇和生物柴油/植物油,可以提高柴油的燃烧效率,从而在NO_x排放方面实现更完全的燃烧。对于CO_2,在1800 rpm和2000 rpm时,下降幅度分别为5-24%和4-6%。同时,在CO排放中未观察到差异。研究的羰基化合物(CC)为甲醛,乙醛,丙醛,丙烯醛,丙酮,巴豆醛,丁醛,丁酮,苯甲醛,异戊醛,戊醛,邻甲苯醛,间甲苯醛,对甲苯甲醛,己醛,辛醛,2,5-二甲基苯甲醛和癸醛。其中,甲醛,乙醛,丙酮和丙醛的排放浓度最高。当三元共混物包含植物油时,存在增加高重量CC的排放并降低低重量CC的排放的强烈趋势。当燃料中包含柴油,乙醇和生物柴油时,丙烯醛的浓度最高。除NO_x外,三元混合燃料的使用导致所研究化合物的排放速率增加。

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  • 来源
    《Atmospheric environment》 |2009年第17期|2754-2761|共8页
  • 作者单位

    Universidade Federal da Bahia, Instituto de Quimica, 40170290 Salvador, BA, Brazil;

    Universidade Federal da Bahia, Instituto de Quimica, 40170290 Salvador, BA, Brazil;

    Universidade Federal da Bahia, Escola Politecnica, 40210-730 Salvador, BA, Brazil Centro Interdistiplinar de Energia e Ambiente - ClEnAm, Universidade Federal da Bahia, Canela, 40110-040 Salvador, BA, Brazil INCT de Energia e Ambiente. UFBA, 40170-290 Salvador, BA, Brazil;

    Universidade Federal da Bahia, Instituto de Quimica, 40170290 Salvador, BA, Brazil Centro Interdistiplinar de Energia e Ambiente - ClEnAm, Universidade Federal da Bahia, Canela, 40110-040 Salvador, BA, Brazil INCT de Energia e Ambiente. UFBA, 40170-290 Salvador, BA, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biodiesel; ethanol; diesel; carbonyl compounds; vehicular emissions;

    机译:生物柴油乙醇柴油机;羰基化合物车辆排放;

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