首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Quantitative and kinetic TG-FTIR investigation on three kinds of biomass pyrolysis
【24h】

Quantitative and kinetic TG-FTIR investigation on three kinds of biomass pyrolysis

机译:三种生物质热解的定量和动力学TG-FTIR研究

获取原文
获取原文并翻译 | 示例
       

摘要

Biomass is applied in power generation or heat production as renewable energy resources. This paper focused on the pyrolysis in thermogravimetric (TG) analyzer of three biomasses, corn cob, tree root and bagasse, which showed different characteristics on their differential thermogravimetric (DTC) curves. In pyrolysis of corn cob, tree root and bagasse, there were three, one and two obvious peaks of DTG curves, respectively. Thermogravimetric Fourier Transform Infrared (TG-FTIR) analysis showed that the maximum mass loss rate at DTG curves was mainly due to cellulose and lignin pyrolysis, and the second mass loss rate peak of corn cob and the first one of bagasse were mainly due to pyrolysis of hemicellulose; while the first mass loss rate peak of corn cob was most likely due to breaking off of OH stretching function groups and H_2O generation of sucrose pyrolysis. The main typical gaseous products were CO_2, CO, H_2O, CH_4, NH_3 and acid & aldehydes (CH_3COOH or furadelhyde). Quantitative FTIR analysis showed that CO produced variation and CO_2 produced before 400 ℃ fitted with DTG curves well. IR results also indicated that hemicellulose pyrolysis had higher CH_3COOH generation. Distributed activated energy model (DAEM) was applied to analyze kinetics of biomass pyrolysis. Similar to their DTG curves, the activation energy (AE) of corn cob showed four high distributions, in which the distributions of about 174.7kJ/mol and 181.6 kJ/mol were highest (more than 20%), followed by that of 161.1 kJ/mol (18.91 %) and 140.5 kJ/mol (9.08%); the AE of tree root had a distinctive distribution, which was as high as 33.9% at 181.6 kj/mol; while that of bagasse had only two distributions more than 6.8%, one is 50.69% at 181.6 kJ/mol, and the other is 25.43% at 167.9 kJ/mol. The pseudo-reactions fitting curves showed that the pyrolysis of corn cob was more complicated than the other two, because of more obvious pseudo-reactions contributed to the DTG curve and there were more than three main components in corn cob. It indicated that pseudo-reaction at 181.6kJ/mol was mainly contributed to cellulose pyrolysis in DTG curves, and those at 161.1 kJ/mol and 167.9 kJ/mol were mainly contributed to hemicellulose pyrolysis, while pseudo-reaction at 174.7 kJ/mol might relate to the pyrolysis of sucrose.
机译:生物质作为可再生能源用于发电或供热。本文重点研究了玉米秸秆,树根和甘蔗渣这三种生物质在热重分析仪中的热解,其热重差曲线显示出不同的特性。在玉米芯,树根和甘蔗渣的热解中,分别存在DTG曲线的三个,一个和两个明显的峰。热重傅里叶变换红外(TG-FTIR)分析表明,DTG曲线的最大质量损失率主要是由纤维素和木质素的热解引起的,玉米芯和蔗渣的第一个质量损失率的峰值主要是由热解引起的半纤维素玉米芯的第一个质量损失率峰值最可能是由于OH伸展功能基团的断裂和蔗糖热解产生的H_2O。主要的典型气态产物为CO_2,CO,H_2O,CH_4,NH_3以及酸和醛(CH_3COOH或呋喃醛)。 FTIR定量分析表明,在400℃之前,CO产生的变化和CO_2的产生符合DTG曲线。 IR结果也表明半纤维素热解具有更高的CH_3COOH生成。分布式活化能模型(DAEM)被用于分析生物质热解的动力学。与它们的DTG曲线相似,玉米芯的活化能(AE)显示出四个高分布,其中约174.7kJ / mol和181.6 kJ / mol的分布最高(超过20%),其次是161.1 kJ / mol(18.91%)和140.5 kJ / mol(9.08%);树根的声发射具有明显的分布,在181.6 kj / mol时高达33.9%。甘蔗渣的分布只有两个大于6.8%,一个在181.6 kJ / mol时为50.69%,另一个在167.9 kJ / mol时为25.43%。拟反应拟合曲线表明,玉米芯的热解比其他两种更为复杂,这是因为假反应对DTG曲线的贡献更为明显,并且玉米芯中的主要成分超过三个。结果表明,在DTG曲线中,181.6kJ / mol的假反应主要是纤维素热解的结果,在161.1 kJ / mol和167.9 kJ / mol的假反应主要是对半纤维素的热解,而174.7 kJ / mol的假反应可能是半纤维素的热解。与蔗糖的热解有关。

著录项

  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2013年第11期|28-37|共10页
  • 作者单位

    Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, PR China;

    Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, PR China;

    Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, PR China;

    Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, PR China;

    Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass pyrolysis; TG-FTIR analysis; Quantitative FTIR analysis; Distributed activated energy model (DAEM); Pseudo-reaction;

    机译:生物质热解;TG-FTIR分析;FTIR定量分析;分布式活化能模型(DAEM);伪反应;

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