Bakeas Evangelos B, Karavalakis Georgios
Laboratory of Analytical Chemistry, Chemistry Department, National and Kapodistrian University of Athens, Panepistimioupolis, 15771, Athens, Greece.
Environ Sci Process Impacts. 2013 Feb;15(2):412-22. doi: 10.1039/c2em30575e. Epub 2012 Dec 7.
This study investigates the impact of low concentration biodiesel blends on the regulated, carbonyl and PAH emissions from a modern passenger vehicle. The vehicle was a Euro 4 compliant SUV type fitted with a common-rail diesel engine and a diesel oxidation catalyst. Emission and fuel consumption measurements were performed on a chassis dynamometer using a constant volume sampling (CVS) technique, following the European regulations. All measurements were conducted over the NEDC and Artemis driving cycles. Aiming to evaluate the fuel impact on emissions, a soy-based biodiesel was blended with an ultra low sulphur diesel at proportions of 10 and 30% by volume. The experimental results revealed that emissions of PM, HC and CO decreased with biodiesel over most driving conditions. Some increases were observed over the NEDC which may be attributed to the cold-start effect and to certain fuel characteristics. NO x emissions were found to be higher with biodiesel especially during Artemis operation. CO 2 emissions and fuel consumption followed similar patterns and increased with biodiesel. Most carbonyl compound emissions increased with biodiesel, with the exception of aromatic aldehydes. It was found that carbonyl emissions decreased as the mean speed and load of the driving cycle was increased. Most PAH emissions were found to be lower with biodiesel, however, some increases were observed for certain toxic compounds.
本研究调查了低浓度生物柴油混合燃料对一辆现代乘用车的常规排放、羰基排放和多环芳烃排放的影响。该车辆是一辆符合欧4标准的SUV型汽车,配备了共轨柴油发动机和柴油氧化催化剂。按照欧洲法规,在底盘测功机上采用定容采样(CVS)技术进行排放和燃油消耗测量。所有测量均在新欧洲驾驶循环(NEDC)和阿耳特弥斯驾驶循环下进行。为了评估燃料对排放的影响,将一种大豆基生物柴油与超低硫柴油按体积比10%和30%进行混合。实验结果表明,在大多数驾驶条件下,颗粒物(PM)、碳氢化合物(HC)和一氧化碳(CO)的排放随着生物柴油的使用而降低。在NEDC循环中观察到了一些增加,这可能归因于冷启动效应和某些燃料特性。发现生物柴油的氮氧化物(NOx)排放更高,尤其是在阿耳特弥斯驾驶循环运行期间。二氧化碳(CO2)排放和燃油消耗呈现相似的模式,并且随着生物柴油的使用而增加。除了芳香醛外,大多数羰基化合物排放随着生物柴油的使用而增加。研究发现,随着驾驶循环的平均速度和负荷增加,羰基排放降低。大多数多环芳烃排放随着生物柴油的使用而降低,然而,某些有毒化合物的排放出现了一些增加。