Yuan Chung-Shin, Lin Hsun-Yu, Lee Wen-Jhy, Lin Yuan-Chung, Wu Tser-Son, Chen Kung-Fu
Institute of Environmental Engineering, National Sun Yat-sen University, Taiwan, Republic of China.
J Air Waste Manag Assoc. 2007 Apr;57(4):465-71. doi: 10.3155/1047-3289.57.4.465.
This study investigated the emissions of polycyclic aromatic hydrocarbons (PAHs), carcinogenic potential of PAH and particulate matter (PM), brake-specific fuel consumption (BSFC), and power from diesel engines under transient cycle testing of six test fuels: premium diesel fuel (PDF), B100 (100% palm biodiesel), B20 (20% palm biodiesel + 80% PDF), BP9505 (95% paraffinic fuel + 5% palm biodiesel), BP8020 (80% paraffinic fuel + 20% palm biodiesel), and BP100 (100% paraffinic fuel; Table 1). Experimental results indicated that B100, BP9505, BP8020, and BP100 were much safer when stored than PDF. However, we must use additives so that B100 and BP100 will not gel as quickly in a cold zone. Using B100, BP9505, and BP8020 instead of PDF reduced PM, THC, and CO emissions dramatically but increased CO2 slightly because of more complete combustion. The CO2-increased fraction of BP9505 was the lowest among test blends. Furthermore, using B100, B20, BP9505, and BP8020 as alternative fuels reduced total PAHs and total benzo[a]pyrene equivalent concentration (total BaPeq) emissions significantly. BP9505 had the lowest decreased fractions of power and torque and increased fraction of BSFC. These experimental results implied that BP9505 is feasible for traveling diesel vehicles. Moreover, paraffinic fuel will likely be a new alternative fuel in the future. Using BP9505 instead of PDF decreased PM (22.8%), THC (13.4%), CO (25.3%), total PAHs (88.9%), and total BaPeq (88.1%) emissions significantly.
本研究调查了六种测试燃料在瞬态循环测试下,多环芳烃(PAHs)的排放、PAH和颗粒物(PM)的致癌潜力、制动特定燃油消耗(BSFC)以及柴油发动机的功率:优质柴油(PDF)、B100(100%棕榈生物柴油)、B20(20%棕榈生物柴油 + 80% PDF)、BP9505(95%链烷烃燃料 + 5%棕榈生物柴油)、BP8020(80%链烷烃燃料 + 20%棕榈生物柴油)和BP100(100%链烷烃燃料;表1)。实验结果表明,B100、BP9505、BP8020和BP100在储存时比PDF安全得多。然而,我们必须使用添加剂,以便B100和BP100在寒冷地区不会那么快结冻。使用B100、BP9505和BP8020代替PDF可显著降低PM、THC和CO排放,但由于燃烧更完全,CO2排放略有增加。在测试混合物中,BP9505的CO2增加比例最低。此外,使用B100、B20、BP9505和BP8020作为替代燃料可显著降低总PAHs和总苯并[a]芘当量浓度(总BaPeq)排放。BP9505的功率和扭矩降低比例最低,BSFC增加比例最高。这些实验结果表明,BP9505对于行驶中的柴油车辆是可行的。此外,链烷烃燃料未来可能会成为一种新的替代燃料。使用BP9505代替PDF可显著降低PM(22.8%)、THC(13.4%)、CO(25.3%)、总PAHs(88.9%)和总BaPeq(88.1%)排放。