...
首页> 外文期刊>Energy Conversion & Management >Thermal investigation of plastic solid waste pyrolysis via the deconvolution technique using the asymmetric double sigmoidal function: Determination of the kinetic triplet, thermodynamic parameters, thermal lifetime and pyrolytic oil composition for clean energy recovery
【24h】

Thermal investigation of plastic solid waste pyrolysis via the deconvolution technique using the asymmetric double sigmoidal function: Determination of the kinetic triplet, thermodynamic parameters, thermal lifetime and pyrolytic oil composition for clean energy recovery

机译:通过使用不对称双S形函数的反褶积技术对塑料固体废物进行热解的热研究:确定动力学三重态,热力学参数,热寿命和用于清洁能源回收的热解油成分

获取原文
获取原文并翻译 | 示例
           

摘要

Pyrolysis is widely used as a waste treatment technology (thermal recycling), which can be an alternative to disposal in landfills. To investigate the applicability of pyrolysis of plastic solid waste (PSW) to recovery energy from plastic solid waste (PSW), the pyrolysis of PSW was performed in a thermogravimetric analyzer under an inert condition. The PSW samples were heated under dynamic conditions from 25 degrees C to 1000 degrees C at four low heating rates (5, 10, 20, and 30 degrees C min(-1)). The decomposition behavior of pseudo-components was characterized by the deconvolution method using the asymmetric double sigmoidal function (Asym2Sig), and the data obtained were used to determine the kinetic parameters. The kinetic parameters were evaluated by isoconversional methods, the compensation effect factor and master plot. The thermodynamic parameters (Delta G, Delta H and Delta S) and lifetime were estimated based on the thermogravimetric and kinetic data. In addition, a fixed-bed reactor and GC-MS were employed to identify some valuable products in pyrolytic oil. Three pseudo-components were identified, which had the main influence on pyrolytic performance. The kinetic parameters suggested the suitability of PSW pyrolysis, where the reaction models were found to be suitable for describing the thermal behavior of PSW pyrolysis. The simulation profile curves from the simplified kinetic expression based on the kinetic triplet and deconvolution results had a satisfactory agreement with experimental conversion curves. The thermodynamic parameters were consistent with other wastes used as a bioenergy feedstock. Plastic solid waste presents attractive characteristics for pyrolytic oil production. The main highlights achieved for this study indicate that the pyrolysis of plastic solid waste can be an important step for the development of a recycling system that can recover energy from these wastes in a clean and environmentally friendly process.
机译:热解被广泛用作废物处理技术(热循环),可以替代垃圾填埋场。为了研究塑料固体废物(PSW)的热解对从塑料固体废物(PSW)回收能量的适用性,在惰性条件下,在热重分析仪中进行了PSW的热解。将PSW样品在动态条件下从25摄氏度加热到1000摄氏度,并以四种低加热速率(5、10、20和30摄氏度min(-1))加热。利用非对称双S形函数(Asym2Sig),通过反卷积方法对伪组分的分解行为进行了表征,并将所得数据用于确定动力学参数。动力学参数通过等转换方法,补偿影响因子和主图进行评估。根据热重和动力学数据估算热力学参数(δG,δH和δS)和寿命。另外,采用固定床反应器和GC-MS鉴定热解油中的一些有价值的产物。鉴定出三个伪组分,它们对热解性能具有主要影响。动力学参数表明PSW热解的适用性,其中发现反应模型适合描述PSW热解的热行为。基于动力学三重态和去卷积结果的简化动力学表达式的模拟轮廓曲线与实验转化曲线具有令人满意的一致性。热力学参数与用作生物能源原料的其他废物一致。塑料固体废物为热解油生产提供了诱人的特性。这项研究取得的主要成果表明,塑料固体废物的热解可能是开发可在清洁,环保的过程中从这些废物中回收能量的回收系统的重要步骤。

著录项

相似文献

  • 外文文献
  • 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