Çetinkaya Büşra, Erkent Sena, Ekinci Kamil, Civan Mihriban, Bilgili Mehmet Emin, Yurdakul Sema
Environmental Engineering Department, Suleyman Demirel University, Isparta, 32000, Turkey.
Agricultural Machinery and Technology Engineering Department, Isparta University of Applied Sciences, Isparta, 32000, Turkey.
Heliyon. 2024 Jan 10;10(2):e23989. doi: 10.1016/j.heliyon.2024.e23989. eCollection 2024 Jan 30.
The study aimed to determine the effects of torrefaction on the fuel properties of pellets. Therefore, firstly, torrefaction parameters of rose ( Mill.) oil distillation solid waste and red pine sawdust were determined through the torrefaction optimization process in terms of temperature and holding time. Then, using the selected torrefaction parameters, 14 different raw and torrefied pellets containing RP, PS, and Turkish Elbistan Lignite were prepared in different weight ratios. Finally, the fuel properties of the prepared raw and torrefied pellets, namely dimensions, proximate analyses, higher heating values, tensile strength, durability, abrasive resistance, and water uptake resistances, were investigated. The findings demonstrated that the higher heating values and carbon content of raw biomass samples increased while their volatile matter content decreased. The use of lignite at high concentrations led to an increase in ash content and a decrease in the strength and durability of pellets, which should be emphasized. In addition, red pine sawdust was used in place of solid waste from rose oil distillation solid waste to produce pellets with greater strength. All pellet mixtures with torrefaction had higher heating values and energy densities despite the fact that their mass and energy efficiency had decreased. It was determined that torrefaction increased the pellets' resistance to absorbing water and gave them a more hydrophobic structure. Thus, it was determined that torrefaction could enhance the crucial fuel parameters of the biomass samples.
该研究旨在确定烘焙对颗粒燃料特性的影响。因此,首先,通过烘焙优化过程,从温度和保温时间方面确定了玫瑰(蔷薇科)油蒸馏固体废物和红松锯末的烘焙参数。然后,使用选定的烘焙参数,以不同重量比制备了14种不同的含红松、锯末和土耳其埃尔比斯坦褐煤的生颗粒和烘焙颗粒。最后,对制备的生颗粒和烘焙颗粒的燃料特性进行了研究,即尺寸、工业分析、高位发热量、拉伸强度、耐久性、耐磨性和吸水性。研究结果表明,生物质原料样品的高位发热量和碳含量增加,而挥发物含量降低。应强调的是,高浓度使用褐煤会导致灰分含量增加,颗粒强度和耐久性降低。此外,用红松锯末代替玫瑰油蒸馏固体废物来生产强度更高的颗粒。尽管烘焙后的所有颗粒混合物的质量和能量效率有所下降,但其具有更高的高位发热量和能量密度。研究确定,烘焙提高了颗粒的吸水性抗性,并赋予它们更疏水的结构。因此,确定烘焙可以提高生物质样品的关键燃料参数。