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Secondary Reactions of Levoglucosan and Char in the Fast Pyrolysis of Cellulose

机译:纤维素快速热解中左旋葡聚糖和焦炭的次级反应

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In fast pyrolysis of cellulose, levoglucosan is often reported as the most abundant primary decomposition product. Char, the solid residue of pyrolysis is thought to catalyze secondary reactions that decompose levoglucosan into water and additional, secondary char. A CDS Analytical Pyroprobe 5200 was used to pyrolyze pure cellulose to levoglucosan and the generated vapors were passed through a temperature-controlled tubular reactor filled with material to be tested for catalytic activity and then to a GC-FID for analysis. Carbonaceous materials included as-received and acid-washed char derived from pyrolysis of red oak and, pure graphite. Acid-washed red oak char and pure graphite had little effect on levoglucosan decomposition compared with the empty tubular reactor for the range of tubular reactor temperatures studied (200-400℃). In contrast, unwashed red oak char significantly reduced the amount of levoglucosan when the tubular reactor was operated above 300℃. These results suggest that metals-which are removed through the procedure of acid washing-rather than the fixed carbon in the char, catalyze the decomposition of levoglucosan in the vapor phase.
机译:在纤维素的快速热解中,左旋葡聚糖经常被报告为最丰富的一次分解产物。焦炭是热解的固体残留物,被认为可催化将左葡聚糖分解为水和其他次级焦炭的次级反应。使用CDS Analytical Pyroprobe 5200将纯纤维素热解为左旋葡聚糖,并使生成的蒸气通过装有可测试催化活性材料的温度受控的管式反应器,然后进入GC-FID进行分析。碳质材料包括原样和酸洗过的炭,该炭由赤栎和纯石墨的热解得到。在研究的管式反应器温度范围内(200-400℃),与空管式反应器相比,酸洗的红橡树炭和纯石墨对左旋葡聚糖的分解几乎没有影响。相反,当管式反应器在300℃以上运行时,未洗涤的赤栎木炭显着降低了左旋葡聚糖的量。这些结果表明,通过酸洗过程除去的金属而不是焦炭中的固定碳催化了左旋葡聚糖在气相中的分解。

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