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Influences of binderless briquetting stresses on intrinsic bioconstituents of rice straw based solid biofuel

机译:无粘结剂团块化应力对稻草基固体生物燃料内在生物成分的影响

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This is the first article, presenting the use of nonaccelerating nodes of thermal degradation of biomaterials to visualize thermogravimetric-reactivity. The transitions of nonaccelerating nodes, during thermal degradation, due to binderless briquetting stresses on rice straw were studied and critically discussed. Intrinsic biopolymeric transformations of rice straw due to binderless briquetting stresses were analysed using thermogravimetry and Fourier transformed infrared spectroscopy. The non accelerating nodes in briquetted biofuel shifted towards higher temperature in lignin-related region showing that lignin became less reactive in briquetted biofuel. A pattern similar to the sine wave function was noticed in the tail end segment of the acceleration profile of thermal degradation. This function was at a phase-lag of 180 in briquetted biofuel as compared to the raw material. In briquetted biofuel, fluctuations in degradation rate for lignin region subsided revealing consistent and consolidated lignin configuration. The FTIR-node at 1325.06 cm(-1) related to characteristic group vibrations of C-O (lignin) emerged in briquetted biofuel. Reduction in energy, related to OH-stretching, CH-bending, C-O stretching was observed due to briquetting stresses. Due to briquetting stresses, the vibrational energy of CH-stretching, lignin-related C = O vibration, and vibrations of lignin-related benzene ring, increased. The energy-related to Si-O-Si FTIR node drastically reduced due to briquetting. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这是第一篇文章,介绍了使用非加速节点对生物材料进行热降解来可视化热重反应。研究并严格讨论了稻谷秸秆无粘结剂团块应力导致的热降解过程中非加速节的转变。使用热重分析和傅里叶变换红外光谱分析了无粘结剂团块应力引起的稻草固有生物聚合转化。团状生物燃料中非加速节点向木质素相关区域的温度升高,这表明木质素在团状生物燃料中的反应性降低。在热降解的加速曲线的尾端部分发现了类似于正弦波函数的模式。与原料相比,团块状生物燃料的此功能处于180度的相位滞后。在压块生物燃料中,木质素区域降解速率的波动平息,表明木质素构型稳定一致。团状生物燃料中出现了与C-O(木质素)的特征基团振动有关的132.06 cm(-1)FTIR节点。由于团块应力,观察到与OH拉伸,CH弯曲,C-O拉伸有关的能量降低。由于团块应力,CH拉伸的振动能,木质素相关的C = O振动以及木质素相关的苯环的振动增加。由于团块化,与Si-O-Si FTIR节点相关的能量大大降低。 (C)2018 Elsevier Ltd.保留所有权利。

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