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Tunisian agro-food wastes recovery by pyrolysis: Thermogravimetric analysis and kinetic study

机译:突尼斯农业食品废弃物通过热解:热重分析和动力学研究

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In keeping with the hierarchy of waste management methods, thermal treatment makes it possible to recover energy from wastes that could not be processed by recycling or material recovering. As far as agricultural wastes are concerned, this biomass has for a long time been covering the domestic energy needs of rural and urban areas, thus reducing the gas and oil import costs. In the context of climate change, biomass is neutral with respect to the carbon cycle, allowing it to be a reliable alternative to fossil fuels. In addition, bioenergy can be stored, which is a key advantage over other renewable energies and therefore allows on-demand energy production. However, the extreme diversity of resources, the wide variety of conversion technologies and the disparity of energy sectors give bioenergy a certain complexity unless technical and economic issues are overcome. In this perspective, the present study focused to identify, through the Tunisian territory, the biomass deposits, to map and evaluate their energy potential. This preliminary phase made it possible to conclude that although Tunisia is among the worldwide leading producers of dates and derivatives, olive oil, wine and concentrated tomatoes, the value chains for their by-products remain vulnerable. This paper is then devoted to the recovery of these wastes for the dual purpose of minimizing their increasing quantities on the one hand and to obtain the energy necessary to operate the process of pyrolysis at the lowest cost, while monitoring their gaseous and particulate emissions on the other hand. To carry out this work, the survey begins with proximate and elemental analyses (ash content, moisture content, calorific value, etc.). The thermal degradation of the different materials was carried out under an inert atmosphere in thermogravimetric analysis conditions. Kinetic models were tested to extract the kinetic parameters required for the development of industrial plants using these different materials as fuels.
机译:在与废物管理方法的层次保持,热处理能够从不能被回收或材料回收处理的废料中回收能量。至于农业废弃物而言,这种生物质具有覆盖了城市和农村地区的国内能源需求,从而降低了天然气和石油进口成本很长一段时间。在气候变化的情况下,生物质是中性相对于碳循环,允许它是化石燃料可靠的替代。此外,生物能源可以被存储,这是相对于其他可再生能源的一个关键优点,因此允许点播能源生产。然而,资源的极度多样化,各种各样的转换技术和能源领域的差距给予生物能源一定的复杂性,除非技术和经济问题的解决。从这个角度来看,目前的研究集中于识别,通过突尼斯境内,生物质沉积,映射和评估它们的潜在能量。这一初步阶段使我们能够得出这样的结论,尽管突尼斯是全球领先的日期和衍生物,橄榄油,葡萄酒和浓缩西红柿,价值链的生产商,其副产物中仍然很脆弱。那么本文致力于这些废弃物的回收上,一方面并获得以最低的成本来操作热解过程所需的能量最小化其增加数量,同时监控对他们的气体和颗粒物排放的双重目的另一方面。要开展这项工作,调查始于接近和元素分析(灰分含量,水分含量,热值等)。不同材料的热降解是在热解重量分析的条件惰性气氛下进行。动力学模型进行了测试,以提取使用这些不同的材料作为燃料的工业厂房开发所需的动力学参数。

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