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Second-Generation Lignocellulosic Supportive Material Improves Atomic Ratios of C:O and H:O and Thermomechanical Behavior of Hybrid Non-Woody Pellets

机译:第二代木质纤维素载体载体提高C:O和H:O和Hybrid非木质颗粒的热机械行为

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摘要

Pellets refer to solid biofuels for heating and power. The pellet’s integrity is of great relevant to ensure safe and effective transportation and storage, and comfort to stakeholders. Several materials that are supportive, whether organic and inorganic, to pellets exist. However, no work in the literature is linking making hybrid non-wood pellets with addition of residual biomass from distillation of cellulosic bioethanol, and this requires further investigations. Figuring out how effective this challenging agro-industrial residue could be for reinforcing non-wood pellets is accordingly the scientific point of this study focusing on management of waste and valorization of biomass. The pilot-scale manufacturing of hybrid pellets consisted of systematically pressing sugarcane bagasse with the lignocellulosic reinforcement at the mass ratios of 3:1, 1:1, and 1:3 on an automatic pelletizer machine at 200 MPa and 125 °C. Elemental contents of C and H, durability, and energy density all increased significantly from 50.05 to 53.50%, 5.95 to 7.80%, 95.90 to 99.55%, and 28.20 to 31.20 MJ kg−1, respectively, with blending the starting material with the reinforcement at 1:3. Preliminary evidence of residual biomass from distillation of second-generation bioethanol capable of highly improving molecular flammable/combustible properties, mechanical stability, and fuel power of composite non-wood pellets exist.
机译:颗粒是指用于加热和动力的固体生物燃料。颗粒的诚信与确保安全有效的运输和储存以及对利益攸关方的舒适感。几种具有支持性的材料,无论有机和无机,都存在颗粒。然而,在文献中没有任何工作是在纤维素生物乙醇的蒸馏中添加杂交非木质颗粒,从纤维素生物乙醇中加入剩余生物质,这需要进一步研究。鉴于这种挑战的农业工业残留物可以用于加强非木质颗粒的效果有效,这项研究的科目侧重于生物量的废物和贪污的管理。杂化颗粒的试验规模制造包括在200MPa和125℃的自动造粒机上系统地压制具有3:1,1:1和1:3的木质纤维素增强的甘蔗泡沫增强。 C和H的元素含量,耐久性和能量密度均分别从50.05升至53.50%,5.95%至7.80%,95.90至99.55%和28.20至31.20 mJ kg-1,并将原料与钢筋混合在1:3。能够高度改善的分子易燃/可燃性能,机械稳定性和复合非木质颗粒的机械稳定性和燃料功率的第二代生物乙醇蒸馏的残留生物质的初步证据存在。

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