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Modifying crystallinity, and thermo-optical characteristics of Paulownia biomass through ultrafine grinding and evaluation of biohydrogen production potential

机译:通过超细研磨和评估生物氢生产潜力来改变泡桐生物量的结晶度和热光学特性

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Exploring the clean and low cost biohydrogen production technology with vastly spread forestry based biomass highlights the practical large scale biohydrogen production prospective. In the present work we exploited the role of ultrafine pretreatment to Paulownia biomass as a sole carbon source to evaluate biohydrogen production potential. The altered physical, thermal and optical characteristics of Paulownia biomass after pretreatment of ultrafine grinding were compared with well-studied biomass of corn stover. Microstructural, FTIR and TGA analysis highlight the deterioration of crystal structure and lignin breaking of cellulose with increase in pretreatment time, which significantly improves hydrolysis and enhances hydrogen production subsequently. In comparison to raw materials, Paulownia leaves have the highest hydrogen production potential whereas after pretreatment, total hydrogen yield from Paulownia stems is increased by 51.8% which is comparable to corn stover. Our results highlight that in comparison to conventional agriculture stover, lignocellulosic Paulownia biomass can be potential candidate for clean energy production with prospective of sustainable supply. (C) 2020 Elsevier Ltd. All rights reserved.
机译:探索清洁和低成本的生物氢生产技术,突出林业的生物量突出了实用大规模生物氢生产前景。在目前的工作中,我们利用超细预处理对泡桐生物量作为唯一碳源的作用,以评估生物氢生产潜力。比较超细研磨后泡桐生物量的物理,热敏和光学特性,与玉米秸秆的良好生物量进行了比较。微观结构,FTIR和TGA分析突出了纤维素晶体结构和木质素破碎的劣化随后改善了水解,提高了氢气产量。与原材料相比,泡桐叶具有最高的氢气产势,而在预处理后,泡桐茎的总氢产率增加了51.8%,与玉米秸秆相当。我们的结果强调,与常规农业液体相比,木质纤维素肺活灭的生物量可以是清洁能源生产的潜在候选者,可持续供应。 (c)2020 elestvier有限公司保留所有权利。

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