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首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Py-GC/MS based analysis of the influence of citric acid leaching of sugarcane residues as a pretreatment to fast pyrolysis
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Py-GC/MS based analysis of the influence of citric acid leaching of sugarcane residues as a pretreatment to fast pyrolysis

机译:基于Py-GC / MS的柠檬酸浸出对甘蔗残留物作为快速热解预处理的影响的分析

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摘要

Sugarcane trash (SCT) and sugarcane bagasse (SCB) are prospective feedstock materials for fast pyrolysis. However, their relatively high inorganic content, especially alkali and alkaline earth metals (AAEMs), affects the quality of the produced bio-oil. This study evaluates the effect of SCT and SCB leaching by citric acid (CA) on the chemical composition of pyrolysis vapors, viz. by applying micro-pyrolysis (Py-GC/MS). Comparison was made between CA and well-known leaching agents including H2SO4, HCl and water. Accordingly, biomass samples were previously leached at different temperatures and leaching times. The results indicate that leaching with either citric acid or well-known inorganic acids causes the yields of levoglucosan in the pyrolysis vapors to increase by 5-8 fold. The mild structural changes in the lignocellulosic matrix, caused by hydrolysis during leaching, demonstrated to be as important for subsequent thermal degradation behavior (and thus increased anhydrosugars production) as the suppression of the intrinsic catalytic effect of the inorganic constituents by their removal during leaching. CA treatment generally favored the reduction in the total production of ketones and furans independently of leaching conditions (temperature, time). Differences in the range of leaching conditions tested (T = 25-50 degrees C; t = 1-12 h) had only minor influence on the composition of the pyrolysis vapors derived from CA pretreated sugarcane residues.
机译:甘蔗垃圾(SCT)和甘蔗渣(SCB)是用于快速热解的潜在原料。但是,它们相对较高的无机含量,尤其是碱金属和碱土金属(AAEM),会影响所生产生物油的质量。这项研究评估了柠檬酸(CA)对SCT和SCB的浸提对热解蒸气化学成分的影响。通过应用微热解(Py-GC / MS)。比较了CA和著名的浸提剂,包括H2SO4,HCl和水。因此,生物质样品预先在不同的温度和浸出时间浸出。结果表明,用柠檬酸或众所周知的无机酸浸出会使热解蒸气中左旋葡聚糖的产量增加5-8倍。木质纤维素基体的温和结构变化(由浸出过程中的水解引起)被证明与随后的热降解行为(并因此增加了脱水糖的产生)一样重要,与抑制无机成分在浸出过程中的内在催化作用一样重要。 CA处理通常有利于减少酮和呋喃的总产量,而与浸出条件(温度,时间)无关。测试的浸出条件范围的差异(T = 25-50摄氏度; t = 1-12小时)对衍生自CA预处理甘蔗残渣的热解蒸气的组成影响很小。

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