Key Laboratory for Power Machinery and Engineering of M.O.E, Shanghai Jiao Tong University, Shanghai, China.
Institute of Eco-Chongming (IEC), Shanghai, China.
Environ Sci Pollut Res Int. 2018 Dec;25(34):34131-34138. doi: 10.1007/s11356-018-3382-3. Epub 2018 Oct 4.
Polycyclic aromatic hydrocarbon (PAH), oxy- and nitro-derivate PAH (OPAH and NPAH) emissions from a direct injection diesel engine fueled with conventional fossil diesel (D), waste cooking oil biodiesel (B100), and their two blends (B20 and B50) were compared. The results show that B100 can reduce low molecular weight PAHs such as naphthalene, acenaphthylene, and fluorene as much as 90% compared with diesel. However, the emissions of high molecular weight PAHs including benzo[b]fluoranthene, benzo[k]fluoranthene, and benzo[a]pyrene decrease slightly when using B100. The emission levels for PAHs and OPAHs present comparable, while NPAH emission levels are five to ten times lower than those of PAHs and OPAHs. Compared with diesel, PAH and NPAH emissions significantly decrease. On the contrary, an increase trend of OPAH emission has been observed with adding biodiesel. For the specific parent PAHs and its oxygenated and nitrated derivatives, the fractions of parent PAHs gradually decrease with increasing biodiesel content in the blends, while the corresponding oxygenated and nitrated derivative fractions observably increase, especially for the high molecular weight compounds. Considering the increase of OPAH and NPAH fractions in total particle-phase PAHs when using biodiesel, in-depth biodiesel cytotoxicity assessment should be conducted.
多环芳烃(PAH)、含氧和含硝基的多环芳烃(OPAH 和 NPAH)排放物,来自直喷式柴油机,分别使用传统化石柴油(D)、废弃食用油生物柴油(B100)以及两者的两种混合物(B20 和 B50)作为燃料。结果表明,与柴油相比,B100 可使萘、苊烯和芴等低分子量 PAH 减少多达 90%。然而,当使用 B100 时,包括苯并[b]荧蒽、苯并[k]荧蒽和苯并[a]芘在内的高分子量 PAH 的排放量略有下降。PAH 和 OPAH 的排放水平相当,而 NPAH 的排放水平则比 PAH 和 OPAH 低五到十倍。与柴油相比,PAH 和 NPAH 的排放量显著减少。相反,随着生物柴油的添加,OPAH 的排放量呈上升趋势。对于特定的母体 PAH 及其含氧和含硝基衍生物,母体 PAH 的分数随着混合物中生物柴油含量的增加而逐渐减少,而相应的含氧和含硝基衍生物分数则显著增加,尤其是对于高分子量化合物。考虑到使用生物柴油时总颗粒相 PAHs 中 OPAH 和 NPAH 分数的增加,应对生物柴油进行深入的细胞毒性评估。