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    • 4. 发明申请
    • TWO-STAGE PLASMA PROCESS FOR CONVERTING WASTE INTO FUEL GAS AND APPARATUS THEREFOR
    • 将废物转化为燃料气体的两级等离子体方法及其设备
    • WO2004087840A1
    • 2004-10-14
    • PCT/CA2004/000514
    • 2004-04-05
    • PYROGENESIS INC.CARABIN, PierreTSANTRIZOS, Peter, George
    • CARABIN, PierreTSANTRIZOS, Peter, George
    • C10J3/18
    • C10J3/18C10J3/466C10J3/57C10J3/721C10J3/845C10J2200/12C10J2300/094C10J2300/095C10J2300/1238C10J2300/1634C10J2300/1807
    • A two-step gasification process and apparatus for the conversion of solid or liquid organic waste into clean fuel, suitable for use in a gas engine or a gas burner, is described. The waste is fed initially into a primary gasifier (12), which is a graphite arc furnace. Within the primary gasifier (12), the organic components of the waste are mixed with a predetermined amount of air, oxygen or steam, and converted into volatiles and soot. The volatiles consist mainly of carbon monoxide and hydrogen, and may include a variety of other hydrocarbons and some fly ash. The gas exiting the primary gasifier first passes through a hot cyclone (22), where some of the soot and most of the fly ash is collected and returned to the primary gasifier (26). The remaining soot along with the volatile organic compounds is further treated in a secondary gasifier where the soot and the volatile compounds mix with a high temperature plasma jet and a metered amount of air, oxygen or steam, and are converted into a synthesis gas consisting primarily of carbon monoxide and hydrogen. The synthesis gas is then quenched and cleaned to form a clean fuel gas suitable for use in a gas engine or a gas burner. This offers higher thermal efficiency than conventional technology and produces a cleaner fuel than other known alternatives.
    • 描述了用于将固体或液体有机废物转化成适用于燃气发动机或气体燃烧器的清洁燃料的两步骤气化方法和装置。 废物最初被送入作为石墨电弧炉的主气化炉(12)中。 在主气化器(12)内,废物的有机成分与预定量的空气,氧气或蒸汽混合,并转化为挥发物和烟灰。 挥发物主要由一氧化碳和氢气组成,可能包括各种其他烃类和一些飞灰。 离开主要气化器的气体首先通过热旋流器(22),其中一些烟灰和大部分飞灰被收集并返回到主气化器(26)。 剩余的烟灰与挥发性有机化合物一起在二次气化器中进一步处理,其中烟灰和挥发性化合物与高温等离子体射流和计量的空气,氧气或蒸汽混合,并转化为主要组成的合成气 的一氧化碳和氢气。 然后将合成气淬火和清洁以形成适用于燃气发动机或气体燃烧器的清洁燃料气体。 这比传统技术提供更高的热效率,并且产生比其他已知替代品更清洁的燃料。