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Effect of Chip Size on Steam Explosion Pretreatment of Softwood

机译:切屑尺寸对软木蒸汽爆破预处理的影响

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Although considerable progress has been made in technology for converting lignocellulosic biomass into ethanol, substantial opportunities still exist to reduce production costs. In biomass pretreatment, reducing milling power is a technological improvement that will substantially lower production costs for ethanol. Improving sugar yield from hemicellulose hydrolysis would also reduce ethanol production costs. Thus, it would be desirable to test innovative pretreatment conditions to improve the economics by reducing electrical power of the milling stage and by optimizing pretreatment recovery of hemicellulose, as well as to enhance cellulose hydrolysis. The objective of this study was to evaluate the effect of chip size (2―5, 5―8, and 8―12 mm) on steam-explosion pretreatment (190 and 210°C, 4 and 8 min) of softwood (Pinus pinaster).
机译:尽管在将木质纤维素生物质转化为乙醇的技术上已经取得了很大的进步,但是仍然存在大量降低生产成本的机会。在生物质预处理中,降低研磨功率是一项技术改进,将大大降低乙醇的生产成本。半纤维素水解提高糖产量也将降低乙醇生产成本。因此,期望测试创新的预处理条件以通过降低研磨阶段的电功率并通过优化半纤维素的预处理回收率以及增强纤维素水解来改善经济性。这项研究的目的是评估切屑尺寸(2-5、5-8和8-12 mm)对软木(Pinus pinaster)的蒸汽爆炸预处理(190和210°C,4和8分钟)的影响)。

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