School of Chemical, Petroleum and Gas Engineering, Iran University of Science and Technology, Tehran, Iran.
Environ Sci Pollut Res Int. 2023 Oct;30(47):104100-104115. doi: 10.1007/s11356-023-29615-1. Epub 2023 Sep 12.
This study aimed to synthesize the biodiesel from Mastic oil by electrolysis method. Mastic gum is a potential and inexpensive feedstock for the biodiesel production. The oil content of Mastic gum was ~ 20% of the total gum weight. The gas chromatography-mass spectrometry (GC-MS) analysis was exploited to measure the oil's fatty acid profile. The response surface methodology (RSM) via Box-Behnken design (BBD) was utilized to specify the best processing condition of the electrolytic transesterification process. According to the RSM-BBD results, the highest predicted biodiesel yield was 95% at the reaction time of 1 h, methanol to oil ratio of 4:1, and catalyst weight of 1.2 wt%. Under these conditions, the produced Mastic oil biodiesel was blended with the neat diesel at different volume ratios of 5:95 (B5), 10:90 (B10), and 15:85 (B15). These fuel mixtures were tested in a single-cylinder engine to assess engine performance and exhaust emissions. The experiments exhibited that blending biodiesel with diesel can slightly improve the engine performance. Moreover, the application of blends with high volumes of biodiesel decreased the exhaust emissions, such as carbon monoxide (CO), carbon dioxide (CO), and unburned hydrocarbons (UHC) by 54.54%, 41%, and 39.3%, respectively. However, the nitrogen oxide (NO) emission increased because of the higher oxygen content of the biodiesel. It was also found that the physical and chemical characteristics of the Mastic oil biodiesel are the same as diesel, consistent with the ASTM standard. The Fourier transform infrared (FTIR) analysis also confirmed the biodiesel production.
本研究旨在通过电解法从乳香树胶中合成生物柴油。乳香树胶是生物柴油生产的一种有潜力且廉价的原料。乳香树胶的油含量约占总树胶重量的 20%。利用气相色谱-质谱联用仪(GC-MS)分析来测量油的脂肪酸组成。通过 Box-Behnken 设计(BBD)的响应面法(RSM)来确定最佳的电解酯交换过程的处理条件。根据 RSM-BBD 的结果,在反应时间为 1 小时、甲醇与油的比例为 4:1、催化剂重量为 1.2wt%的条件下,生物柴油的产率最高,预测值为 95%。在这些条件下,将制得的乳香树胶生物柴油与纯柴油以不同的体积比(5:95(B5)、10:90(B10)和 15:85(B15))混合。这些燃料混合物在单缸发动机中进行了测试,以评估发动机性能和废气排放。实验表明,将生物柴油与柴油混合使用可以略微提高发动机性能。此外,应用高比例生物柴油的混合物可以降低废气排放,如一氧化碳(CO)、二氧化碳(CO)和未燃烧的碳氢化合物(UHC)分别降低了 54.54%、41%和 39.3%。然而,由于生物柴油的含氧量较高,氮氧化物(NO)的排放增加了。还发现,乳香树胶生物柴油的物理和化学特性与柴油相同,符合 ASTM 标准。傅里叶变换红外(FTIR)分析也证实了生物柴油的生产。