首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >A study on catalytic co-pyrolysis of cellulose with seaweeds polysaccharides over ZSM-5: Towards high-quality biofuel production
【24h】

A study on catalytic co-pyrolysis of cellulose with seaweeds polysaccharides over ZSM-5: Towards high-quality biofuel production

机译:ZSM-5上纤维素与海藻多糖的催化共热解的研究:高质量生物燃料的生产

获取原文
获取原文并翻译 | 示例
       

摘要

During pyrolysis process, hundreds of parallel and successive pyrolytic reactions between different constituents take place forming complex products. Understanding the pyrolysis behavior of each individual component as well as the interaction of different components is a challenge to further elucidate the complex biomass pyrolysis process. The present study aimed to explore the effect of celluloses (CE), as a main component of lignocellulosic biomass, on catalytic co-pyrolysis of Enteromorpha clathrata polysaccharides (ENP) and Sargassum fusiforme polysaccharides (SAP). The yields of bio-oil and non-condensable gas of pyrolyzed algal polysaccharides showed the lowest values, with the highest bio-char yield. However, co-pyrolysis of algal polysaccharides with CE enhanced the bio-oil yield of ENP and SAP by 34% and 29%, respectively, over the corresponding individual pyrolyzed polysaccharides. The results of GC-MS and FTIR of bio-oils confirmed the synergistic interaction between polysaccharides and CE during co-pyrolysis. Furthermore, bio-oils yields increased by 7.0% and 14.4% by catalytic co-pyrolysis of ENP + CE and SAP + CE, respectively. Interestingly, ZSM-5 resulted in significant reduction in acids and N-containing compounds of the produced bio-oil. In addition, ZSM-5 catalytic co-pyrolysis of the two studied polysaccharides with cellulose sharply increased furans and ketones proportions. The present results suggested catalytic co-pyrolysis as more favorable process for enhanced production of upgraded bio-oil.
机译:在热解过程中,不同成分之间发生数百次平行和连续的热解反应,形成复杂的产物。了解每个单独组分的热解行为以及不同组分的相互作用是进一步阐明复杂的生物质热解过程的挑战。本研究旨在探讨作为木质纤维素生物质主要成分的纤维素(CE)对克氏菌肠多糖(ENP)和羊栖菜(Sargassum fusiforme)多糖(SAP)的催化共热解的影响。热解藻类多糖的生物油和不凝性气体的产率最低,生物炭产率最高。然而,与相应的单独的热解多糖相比,藻类多糖与CE的共热解分别将ENP和SAP的生物油收率提高了34%和29%。 GC-MS和生物油的FTIR的结果证实了共热解过程中多糖和CE之间的协同作用。此外,通过ENP + CE和SAP + CE的催化共热解,生物油的产率分别提高了7.0%和14.4%。有趣的是,ZSM-5大大降低了所生产生物油中的酸和含氮化合物。另外,两种研究的多糖与纤维素的ZSM-5催化共热解反应使呋喃和酮的比例急剧增加。目前的结果表明,催化共热解是提高提质生物油产量的更有利方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号