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Tomato-Processing By-Product Combustion: Thermal and Kinetic Analyses

机译:番茄加工副产物燃烧:热学和动力学分析

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摘要

This paper is part of a sustainable development approach, the aim being to develop a thermochemical energy recovery path while reducing the amount of tomato waste issued from agro-industrial units. The thermal process may contribute to an environmentally friendly management and help tomato processing industries creating new economic profitable circuits in an increasingly competitive context. The adopted approach was to follow the operating conditions needed for a complete thermal degradation through a thermal and kinetic analyses. The results of the tomato waste characterization confirmed their suitability to a thermochemical processing with high volatiles and fixed carbon and interesting high heating values comparable to sawdust biomass. We were able to isolate of the decomposition domains and extract kinetic parameters. Three kinetic models were applied; Flynn–Wall–Ozawa (FWO) simulated the best the combustion process. Calculated curves were validated by the first order (n = 1) model except for the slow heating rate of 5 °C/min which was fitted by the contracted cylinder model. The conclusions of this paper could help in optimizing the combustion process in order to achieve high energy recovery from tomato residues. Obtained kinetic data would help in the design of combustion reactors.
机译:本文是可持续发展方法的一部分,目的是开发一条热化学能回收途径,同时减少农用工业单位发出的番茄废物量。热处理可以促进环保管理,并帮助番茄加工业在竞争日益激烈的背景下创造新的经济上有利可图的电路。采用的方法是通过热和动力学分析来遵循完全热降解所需的操作条件。番茄废物表征的结果证实了它们适用于具有高挥发性和固定碳的热化学处理,并且具有与锯末生物质相当的令人感兴趣的高发热量。我们能够分离出分解域并提取动力学参数。应用了三个动力学模型。 Flynn-Wall-Ozawa(FWO)模拟了最佳的燃烧过程。计算曲线通过一阶模型(n = 1)进行了验证,除了5°C / min的缓慢加热速率已通过收缩圆柱模型拟合。本文的结论有助于优化燃烧过程,以实现番茄残渣的高能量回收。获得的动力学数据将有助于燃烧反应堆的设计。

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