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Pilot scale thermolysis of municipal solid waste Combustibility of the products of the process and gas cleaning treatment of the combustion gases

机译:城市固体废物的中试规模热解工艺产品的燃烧性和燃烧气体的气体净化处理

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This paper describes the process of thermolysis of the organic fraction of municipal solid waste in a pilot scale reactor and the results are compared with others obtained under laboratory conditions (semi-pilot scale). The aim of this study was to get the energetic valorisation of the products. Owing to the specific characteristics of the plant, two products were obtained from the process: gas and carbonized solid, no liquid fraction was obtained, so the gas fraction is a greater percentage made up both condensable and non-condensable compounds, while at the laboratory scale were obtained separately. The pilot plant was designed so that the gases produced by thermolysis were burnt continuously in a combustion chamber, while the carbonized fraction was fed in batches for co-combustion. To determining composition and combustibility a chromatographic analysis of the gas fraction was undertaken, the solid fraction also being subjected to analyses. The gas composition, rich in light hydrocarbons, and the carbon present in the carbonized fraction make possible the energetic valorisation of these products. The combustion gases were subjected to a cleaning process and their composition analysed twice: before and after the gas cleaning treatment. An energy production system based on the Rankine cycle is proposed. The study led to a positive assessment of the possible use of the process products as fuel, provided that the combustion gases are treated. The neutralization treatment used was seen to be effective in the cleaning of combustion gases. Electricity production yields would have to be raised by means of a co-generation process.
机译:本文介绍了中试规模反应器中城市固体废物有机部分的热解过程,并将结果与​​在实验室条件下(半试规模)获得的其他结果进行了比较。这项研究的目的是使产品充满活力。由于工厂的特殊特性,该过程中获得了两种产品:气体和碳化固体,没有获得液体馏分,因此,在实验室时,气体馏分由可冷凝和不可冷凝的化合物组成的比例更高。规模分别获得。中试装置的设计使热解产生的气体在燃烧室内连续燃烧,而碳化馏分则分批进料进行共燃烧。为了确定组成和可燃性,对气体馏分进行了色谱分析,还对固体馏分进行了分析。富含轻质烃的气体成分以及碳化馏分中存在的碳使得这些产品的能量增值成为可能。对燃烧气体进行净化处理,并在气体净化处理之前和之后分析其成分两次。提出了一种基于朗肯循环的能源生产系统。如果对燃烧气体进行了处理,则该研究对使用过程产品作为燃料的可能性进行了积极评估。可以看出,使用的中和处理对燃烧气体的清洁是有效的。必须通过热电联产工艺提高发电量。

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