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The fate of ashes and inorganics in a two-stage fluid particle system for waste valorization

机译:两级流体粒子系统中灰烬和无机的命运,用于废物价值

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This paper reviews the most recent results obtained at the Gasplasma pilot plant for gasification of municipal solid wastes in the UK. The two-stage system involves the combination of a fluidized bubbling bed and a single carbon electrode plasma converter. Bed particles of mullite (3Al2O3-2SiO2) with coarse particle size (1-2 mm) are applied as solid inventory in the fluidized bed system. The waste is thermally decomposed within the fluidized bed to produce a crude syngas, containing residual tars, unconverted char and entrained ash particles. The crude syngas is then sent to the plasma cyclone converter where all the inorganic material (particulates and heavy metals components) are captured and immobilized into a vitrified slag. Experimental test runs with RDF waste were conducted by varying the operating conditions and contaminants quantity. The results are presented according to solid samples composition, gas composition, and further specific data (e.g., carbon conversion efficiency, leaching test, etc). Particulate loading data and materials mass balance suggested from 40 to 90% of non-volatile metals (e.g. chromium) and other heavy metals (e.g. vanadium) were incorporated within the slag where they are rendered non-leachable. The work demonstrates the ability to process highly heterogeneous material achieving high energy conversion (87-94%), high material recovery, and virtually complete carbon conversion, producing a very clean syngas capable of being used for power generation or as a chemical feedstock.
机译:本文审查了在英国市政固体废物的Gasplasma试点厂获得的最新成果。两级系统涉及流化的鼓泡床和单碳电极等离子体转换器的组合。莫来石(3Al2O3-2SiO2)含有粗粒尺寸(1-2毫米)的甲颗粒作为固体库存在流化床系统中施加。废物在流化床内热分解,以产生粗合成气,含有残留的焦油,未转化的炭和夹带灰分颗粒。然后将原始合成气送到等离子体旋风转换器,其中所有无机材料(颗粒物和重金属组分)被捕获并固定到玻璃化渣中。通过改变操作条件和污染物量来进行具有RDF废物的实验试验。结果根据固体样品组合物,气体组合物和其他特异性数据(例如,碳转化效率,浸出试验等)呈现。颗粒状加载数据和材料质量平衡建议的40%至90%的非挥发性金属(例如铬)和其他重金属(例如钒)纳入其中不可浸出的炉渣内。该工作证明了能够处理高能量转化(87-94%),高质量恢复和几乎完全碳转换的高能量转换的能力,产生非常清洁的合成气,能够用于发电或作为化学原料。

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