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Environmental performance assessment of the application of high temperature phase change materials in waste-to-energy plants

机译:对储存到能量植物中高温相变材料应用的环境性能评估

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The constantly growing worldwide population is leading to a constant increment of waste production. In most developing and developed countries an ongoing key challenge is to collect, recycle, treat and dispose consistent quantities of solid waste. In this context, Waste-to-Energy (WtE) plants play a crucial role as they convert waste into energy. Among the different technical issues, temperature fluctuations of the flue gas and high temperature corrosion represent two of the main limitations to the plant efficiency. A possible solution consists of using a refractory brick containing a Phase Change Material (PCM) to enable the installation of additional superheaters in the combustion chamber in order to increase the temperature of the superheated steam without provoking corrosion, which allows the overall electrical efficiency to be increased. This study assesses the environmental impact originated by the employment of the aforementioned technology by means of Life Cycle Assessment (LCA). In particular, an LCA comparison study between a "standard" WtE plant configuration and a PCM-equipped plant is carried out. The comparison aims to highlight the environmental burdens generated by the employment of an additional quantity of refractory material, as well as the adoption of PCM and the modifications applied at system level (e.g. heat exchanger surfaces). On the contrary, such negative contribution should be mitigated by the increment in the electric efficiency of the plant which, given a definite amount of solid waste input to handle would return a higher amount of electric energy as output.
机译:全球范围内的不断增长的人口导致废物生产不断增长。在大多数发展中国家和发达国家的持续关键挑战是收集,回收,治疗和处理一致的固体废物。在这种情况下,废物到能量(WTE)工厂在将废物转化为能量时发挥至关重要的作用。在不同的技术问题中,烟道气和高温腐蚀的温度波动代表了对植物效率的两个主要局限性。可能的解决方案包括使用含有相变材料(PCM)的耐火砖,以使得在燃烧室中的额外过热器安装,以便在不引人注目的情况下增加过热蒸汽的温度,这允许整体电效率增加。本研究评估了通过生命周期评估(LCA)的上述技术就业的环境影响。特别地,执行“标准”WTE工厂配置和配备PCM设备之间的LCA比较研究。比较旨在突出通过采用额外数量的耐火材料产生的环境负担,以及PCM的采用以及在系统级(例如热交换器表面)的修改。相反,这种消极贡献应该通过植物的电效率的增量来减轻,这是给定量的固体废物进入,作为输出将恢复较高量的电能。

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