Karakullukçu Nalan Türköz, Muğlu Halit, Yakan Hasan, Yılmaz Volkan Murat, Marah Sarmad, İnce İkbal Agah
Karadeniz Advanced Technology Research and Application Center, Ondokuz Mayis University, Atakum, 55200 Samsun, Turkey.
Department of Chemistry, Faculty Science, Kastamonu University, 37150 Kastamonu, Turkey.
Antioxidants (Basel). 2024 Jul 8;13(7):819. doi: 10.3390/antiox13070819.
Biodiesel has several drawbacks, such as being prone to oxidation, having reduced stability, and having limited storage time. Antioxidants compatible with biodiesel are being used to address its drawbacks. Utilizing antioxidants effectively improves the quality of biodiesel. Enhancing the quality of biodiesel for use as a clean energy source benefits both the global economy and ecology. Therefore, we believe that our work will contribute to the advancement of the biodiesel industry worldwide. This study used blends consisting of 20% biodiesel and 80% diesel fuel. Isatin-thiosemicarbazones were tested as additives in blends at a concentration of 3000 parts per million (ppm) using an oxifast device and were compared with the chemical antioxidant Trolox. FT-IR, DSC, and TGA were used to characterize these samples. DSC measured sample crystallization temperatures (Tc). Samples with antioxidants showed decreased values compared to the non-antioxidant diesel sample D100. Several DSC tests were conducted to determine the antioxidant strengths of various samples. The results show that the FT-IR spectrum's antioxidant effect regions grow clearer with antioxidants. The extra antioxidant is effective. Biodiesel's oxidative stability improves with isatin-thiosemicarbazones at varying concentrations. The kinetics of thermal decomposition of isatin-thiosemicarbazones under non-isothermal conditions were determined using the Kissinger, Ozawa, and Boswell techniques. The activation energies of compounds and were calculated as 137-147 kJ mol and 173-183 kJ mol, respectively.
生物柴油有几个缺点,比如易于氧化、稳定性降低以及储存时间有限。与生物柴油兼容的抗氧化剂正被用于解决其缺点。有效利用抗氧化剂可提高生物柴油的质量。提高生物柴油作为清洁能源的质量对全球经济和生态都有益。因此,我们相信我们的工作将有助于全球生物柴油行业的发展。本研究使用了由20%生物柴油和80%柴油燃料组成的混合燃料。使用oxifast设备,以3000 ppm的浓度将异吲哚啉硫代半卡巴腙作为添加剂在混合燃料中进行测试,并与化学抗氧化剂Trolox进行比较。使用傅里叶变换红外光谱(FT-IR)、差示扫描量热法(DSC)和热重分析法(TGA)对这些样品进行表征。DSC测量样品的结晶温度(Tc)。与不含抗氧化剂的柴油样品D100相比,含有抗氧化剂的样品显示出更低的值。进行了多次DSC测试以确定各种样品的抗氧化强度。结果表明,随着抗氧化剂的加入,FT-IR光谱的抗氧化作用区域变得更清晰。额外的抗氧化剂是有效的。不同浓度的异吲哚啉硫代半卡巴腙可提高生物柴油的氧化稳定性。使用基辛格法、小泽法和博斯韦尔法确定了异吲哚啉硫代半卡巴腙在非等温条件下的热分解动力学。化合物 和 的活化能分别计算为137 - 147 kJ/mol和173 - 183 kJ/mol。