Saadon Syazmi Zul Arif Hakimi, Osman Noridah Binti, Damodaran Moviin, Liew Shan En
Department of Chemical Engineering, Universiti Teknologi PETRONAS, Bandar Seri Iskandar 32610, Perak, Malaysia.
Higher Institution Centre of Excellence (HICoE)-Center for Biofuel and Biochemical Research, Institute of Self-Sustainable Building, Universiti Teknologi PETRONAS, Bandar Seri Iskandar 32610, Perak, Malaysia.
Materials (Basel). 2022 Apr 14;15(8):2890. doi: 10.3390/ma15082890.
The torrefaction process in the preparation of energy materials has garnered a lot of attention and has been investigated as a means of improving biomass solid fuels. The aim of this study is to study the effect of the temperature and holding time of two biomass samples: wild Napier grass and oil palm petiole. The torrefied samples are operated in a pyrolysis reactor to replicate the torrefaction procedure. The temperature parameter ranges between 220 and 300 °C while the holding time of the reaction parameter ranges from 10 to 50 min. It is found that with increasing temperature and time, the moisture content and number of O and H atoms decrease and also cause both mass and energy yield to decrease. It is found that the calorific value and the energy density increase with both parameters, which shows that optimization is needed for better solid fuel production. Between the two parameters, temperature changes have more significant effects on the torrefied samples. The optimized temperature and time are found to be 260 °C and 30 min, respectively. The usage of the pyrolysis reactor for the torrefaction reaction has been proven to serve as a good option due to similar product characteristics and equivalent results.
能源材料制备中的烘焙过程已引起广泛关注,并作为改善生物质固体燃料的一种方法进行了研究。本研究的目的是研究两种生物质样品(野生象草和油棕叶柄)的温度和保温时间的影响。烘焙后的样品在热解反应器中进行操作,以模拟烘焙过程。温度参数范围为220至300℃,而反应参数的保温时间范围为10至50分钟。研究发现,随着温度和时间的增加,水分含量以及氧和氢原子的数量减少,同时导致质量和能量产率下降。研究发现,热值和能量密度随这两个参数的增加而增加,这表明需要进行优化以生产出更好的固体燃料。在这两个参数中,温度变化对烘焙后的样品影响更为显著。优化后的温度和时间分别为260℃和30分钟。由于产品特性相似且结果相当,热解反应器用于烘焙反应已被证明是一个不错的选择。