首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pyrolysis kinetics and synergistic effect in co-pyrolysis of Samanea saman seeds and polyethylene terephthalate using thermogravimetric analyser
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Pyrolysis kinetics and synergistic effect in co-pyrolysis of Samanea saman seeds and polyethylene terephthalate using thermogravimetric analyser

机译:热解析仪使用热解析仪共热解析的热解动力学和协同作用

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摘要

This work deals with co-pyrolysis of polyethylene terephthalate (PET) with Samanea saman seeds (SS) to understand the kinetics and synergistic effects between two different feedstocks. SS and PET were blended in different ratios (1:1, 3:1 and 5:1) and iso-conversional models such as Kissinger-Akahira-Sunose (KAS), Friedman method (FM), Starink (ST), Ozawa-Flynn-Wall method (OFW), and Coats-Redfern method (CR) were used to calculate the kinetic parameters. Results substantiate assumed hypothesis that blending of SS and PET at 3:1 provided higher synergistic effect and RMS value, which in turn indicated maximum formation of hot volatiles during pyrolysis. Kinetic analysis confirmed that individual SS and PET required higher activation energy while blended SS and PET at 3:1 ratio required lower activation energy to start the reaction. The thermodynamic and kinetic analysis confirmed that biomass had complex reaction kinetics which depends on reaction rate as well as its order.
机译:这项工作涉及聚对苯二甲酸乙二醇酯(PET)的共热分解,桑普欧撒旦种子(SS)以了解两种不同原料之间的动力学和协同效应。 SS和PET以不同的比例混合(1:1,3:1和5:1)和iso-Connestional Models,如Kissinger-Akahira-Sunose(KAS),弗里德曼方法(FM),明星(ST),Ozawa- Flynn-Wall方法(OFW)和涂层 - Refern方法(CR)用于计算动力学参数。 结果证实假设SS和PET在3:1中混合提供了更高的协同效应和RMS值,其又指示热解期间热挥发物的最大形成。 动力学分析证实,单个SS和PET需要更高的活化能量,同时混合SS和PET 3:1的比率,所需的比率降低激活能量以开始反应。 热力学和动力学分析证实生物质具有复杂的反应动力学,其取决于反应速率以及其顺序。

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