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FLYING ASH TREATMENT METHOD AND FLYING ASH

机译:粉煤灰的处理方法及粉煤灰

摘要

PPROBLEM TO BE SOLVED: To provide a flying ash treatment method which can remove not only unburned carbon but also trace elements from flying ash, and the flying ash. PSOLUTION: In the flying ash treatment method, the flying ash containing unburned carbon particles and ash particles, after being charged into a fly ash hopper 1, is supplied into electrified piping 3 by a fly ash supply part 2 and transported to an electrostatic separation part 4 by compressed air. By friction electrification by the collision of the unburned carbon particles and the ash particles with the inner wall surface of the electrified piping 3 or the collision between the unburned carbon particles and the ash particles, the ash particles are charged negatively and the unburned carbon particles are charged positively. The unburned carbon particles and the ash particles receive force in the opposite direction respectively from an electric field when they pass through the electrostatic separation part 4 so that their flows are biased. In this way, low unburned carbon ash of at least 40% unburned carbon removal rate and high unburned carbon ash of a high unburned carbon content are recovered. PCOPYRIGHT: (C)2004,JPO&NCIPI
机译:

要解决的问题:提供一种飞灰处理方法,该方法不仅可以清除未燃烧的碳,而且还可以清除飞灰和飞灰中的微量元素。

解决方案:在粉煤灰处理方法中,将包含未燃烧碳颗粒和粉尘颗粒的粉煤灰装入粉煤灰料斗1中后,由粉煤灰供应部分2供应到电气化管道3中,并输送到通过压缩空气的静电分离部分4。通过未燃烧的碳粒子和粉尘粒子与带电配管3的内壁面的碰撞或未燃烧的碳粒子与粉尘粒子之间的碰撞而进行的摩擦带电,使灰粒子带负电,未燃烧的碳粒子为负。积极地充电。当未燃烧的碳颗粒和灰烬颗粒通过静电分离部分4时,它们分别受到来自电场的相反方向的力,从而使它们的流动受到偏向。以此方式,回收了未燃烧碳去除率至少为40%的低未燃烧碳灰和高未燃烧碳含量的高未燃烧碳灰。

版权:(C)2004,日本特许厅和日本国家唱片公司

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