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首页> 外文期刊>Energy sources. Part A, Recovery, utilization, and environmental effects >Pyrolysis of Sugarcane Bagasse and Co-pyrolysis with an Argentinean Subbituminous Coal
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Pyrolysis of Sugarcane Bagasse and Co-pyrolysis with an Argentinean Subbituminous Coal

机译:甘蔗渣的热解和与阿根廷次烟煤的共热解

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摘要

Physicochemical properties of the charcoal arising from pyrolysis of sugarcane bagasse at 600℃ and 800℃ were determined to evaluate potentialities for specific end uses. The charcoals were found fairly adequate as solid bio-fuels. Their quality was comparable to charcoals obtained from some other agro-industrial byproducts, reportedly proposed as substitutes of wood-based ones. Surface properties of the charcoal generated at the higher temperature indicated that it is reasonably suited for potential use as low-cost rough adsorbent, soil amender, and/or for further upgrading to activated carbon. Moreover, kinetic measurements for pyrolysis of the sugarcane bagasse individually and mixed with an Argentinean subbituminous coal in equal proportions were conducted by thermogravimetry for the range 25℃ -900℃ . Data modeling accounting for variations in the activation energy with process evolution provided a proper description of pyrolysis and co-pyrolysis over the entire temperature range.
机译:测定了甘蔗渣在600℃和800℃下热解所产生的木炭的理化性质,以评估特定最终用途的潜力。人们发现木炭相当适合作为固体生物燃料。它们的质量可与从其他一些农业工业副产品获得的木炭相媲美,据报道,这些副产品被提议用作木基副产品的替代品。在较高温度下生成的木炭的表面性质表明,该木炭合理地适合用作潜在的低成本粗吸附剂,土壤改良剂和/或进一步升级为活性炭。此外,通过热重法在25℃-900℃范围内对甘蔗渣分别热解并与阿根廷次烟煤按等比例混合进行了动力学测量。考虑到活化能随工艺演变而变化的数据模型,对整个温度范围内的热解和共热解提供了正确的描述。

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