首页> 外文会议>Annual North American Waste to Energy Conference(NAWTEC13); 20050523-25; Orlando,FL(US) >Pulse-jet Baghouse Optimization in WTE: Meeting the Challenges of the Future
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Pulse-jet Baghouse Optimization in WTE: Meeting the Challenges of the Future

机译:WTE中的脉冲喷气式集尘室优化:迎接未来的挑战

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Like many coal-fired power plants today, the waste-to-energy (WTE) industry is faced with a number of challenges including the need to maximize plant output, lower outlet emissions and increase plant efficiencies. Within WTE, there's also been a move from reverse-air baghouses to pulse-jet collectors due to lower initial capital costs and the ability to operate pulse-jet collectors at higher air-to-cloth ratios (3-4:1), allowing for a smaller housing footprint. However, the majority of today's pulse-jet collectors utilize an off-line cleaning mode where modules are taken out of service and pulsed to lower the differential pressure. There are inherent advantages in switching from an off-line cleaning mode to an on-line cleaning mode. This paper discusses the idea of using the fabric filter as a damper and stabilizing draft through the baghouse and boiler. It also outlines the use of pleated filter element (PFE) technology to address increased production concerns, and the need for lower outlet emissions.
机译:像当今许多燃煤发电厂一样,垃圾发电(WTE)行业也面临着许多挑战,包括需要最大限度地提高发电厂的产量,降低出口排放并提高发电厂的效率。在WTE中,由于较低的初始投资成本以及能够以较高的空对布比(3-4:1)操作脉冲喷射收集器的能力,因此也从反向空气集尘室转向脉冲喷射收集器。用于较小的外壳。但是,当今大多数脉冲收集器都采用离线清洁模式,在该模式下,模块停止使用并进行脉冲处理以降低压差。从离线清洁模式切换到在线清洁模式具有固有的优势。本文讨论了使用织物过滤器作为阻尼器并通过布袋除尘器和锅炉稳定通风的想法。它还概述了褶式过滤器元件(PFE)技术的使用,以解决增加的生产问题以及降低出口排放的需求。

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