Department of Civil Engineering, Kongu Engineering College, Perundurai, 638060, Tamilnadu, India.
Environ Sci Pollut Res Int. 2023 Jan;30(4):10110-10127. doi: 10.1007/s11356-022-22823-1. Epub 2022 Sep 7.
Biomass energy contributes nearly 14% of the total global energy. Therefore, biomass briquettes can be effectively considered an alternate source of fossil fuels. The present study aims at utilizing Senna auriculata and Ricinus communis waste generated locally for the production of biomass briquettes with 10% of tapioca starch as binder. The biomass wastes are blended at various proportions such as 0:100 (S1), 25:75 (S2), 50:50 (S3), 75:25 (S4) and 100:0 (S5) respectively, and the concentration of binder was maintained to be constant. The characterization of the prepared biomass briquettes includes the analysis of physical characteristics, proximate analysis, elemental analysis, SEM analysis, thermogravimetric analysis, differential scanning calorimetric analysis and XRD analysis. The results of the proximate analysis have revealed that the biomass briquettes possess lower percentage in terms of moisture content, ash content, sensible fixed carbon and high percentage of volatile matter content. Energy dispersive X-ray analysis has shown that the carbon and oxygen are the major elements for all the biomass briquettes. SEM analysis has revealed that the surface of the biomass briquettes is identified with irregular surface, lumps, cavities and few deposits of carbon particles. Thermogravimetric analysis and DSC analysis have reconfirmed the spontaneous burning characteristics of biomass briquettes. XRD analysis has proved that the bonding between each element present in the biomass briquettes is either monoclinic, tetragonal, orthorhombic or anorthic.
生物质能贡献了全球能源总量的近 14%。因此,生物质颗粒可以被有效地视为化石燃料的替代能源。本研究旨在利用当地产生的番泻叶和蓖麻废物生产生物质颗粒,其中 10%的木薯淀粉作为粘合剂。生物质废物分别以不同的比例混合,如 0:100(S1)、25:75(S2)、50:50(S3)、75:25(S4)和 100:0(S5),并且保持粘合剂的浓度不变。所制备的生物质颗粒的特性分析包括物理特性、近似分析、元素分析、SEM 分析、热重分析、差示扫描量热分析和 XRD 分析。近似分析的结果表明,生物质颗粒的水分含量、灰分含量、可感知固定碳和挥发性物质含量百分比较低。能量色散 X 射线分析表明,所有生物质颗粒的主要元素是碳和氧。SEM 分析表明,生物质颗粒的表面具有不规则的表面、块状、空腔和少量碳颗粒的沉积。热重分析和 DSC 分析再次证实了生物质颗粒的自燃特性。XRD 分析证明了生物质颗粒中存在的每个元素之间的结合是单斜、四方、正交或斜方的。