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Advanced Pollution Control for Gasification of Varied Opportunity Fuels

机译:各种机会燃料气化的高级污染控制

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Advances in gasification technology have opened up a number of commercial opportunities to generate energy from a wide range of non-traditional feed stocks. Gasification technology platforms from a number of providers are in development with the goal of creating modular solutions for supplying the energy needs of local communities, often in solutions as small as 10 to 20 MW increments. Such technologies offer potential project developers the ability to explore local opportunities for fuel supply from a number of sources. These opportunity fuels cover a wide range of potential energy sources as far reaching as recovered plastic, recovered tires, poultry litter, and a wide variety of woody biomass. The syn-gas produced from the gasification of such varied opportunity fuels contains a number of undesired trace components. These components will need to either be removed via gas conditioning, or alternatively be combusted with the syn-gas in an oxidation step which will produce a flue gas requiring air pollution control. Gas conditioning requirements vary depending on the desired end use of the syn-gas whether as a utility quality fuel or as an intermediate to a further chemical pathway. Flue gas target levels are defined by current environmental legislation. The potential pollutants produced in the flue gas pathway include Particulate Matter, Hydrogen Chloride, Sulfur Dioxide, Sulfuric Acid Mist, and Oxides of Nitrogen. To ensure operational compliance of the system stack emissions both now and in the future, proper pollution control technology is paramount. This presentation will address an emerging air pollution control technology that embodies all of these removal steps in a single device specifically designed to meet current and expected future environmental needs. EISENMANN's recently patented multi-pollutant control system, the Wet Electrostatic Precipitator Dual Field or WESP-2F, includes the use of a pre-scrubbing chamber for large PM, SO2, and water soluble NO2 removal. Following the quench and pre-scrubbing region, a specially tuned downflow wet ESP field is responsible for finer PM and Sulfuric Acid aerosol removal, as well as an important Ozone producing stage that oxidizes non-water soluble forms of NOx. As the gas continues to travel through the system, a secondary scrubbing chamber is used to further reduce NOx by scrubbing the newly formed NO2 that has been formed from the oxidation of other forms of NOx through the use of Ozone produced by the electrostatic precipitator. The final polishing stage of the system includes an upflow wet electrostatic precipitator field for the removal of newly oxidized material as well as any heavy metals present. Research and testing on the aforementioned system took place using a pilot sized unit operating a slipstream off a 20 MW commercial sized gasifier testing a number of opportunity fuels. Expected performance was validated proving high removal efficiencies for pollutants specifically addressed earlier. Results from a wide variety of opportunity fuels will be discussed. Current implementation of the technology in gasification projects following the flue gas pathway is underway and is currently viewed as an acceptable solution to the environmental regulations associated with the plant requirements.
机译:气化技术的进步为利用多种非传统原料生产能源开辟了许多商业机会。许多供应商的气化技术平台正在开发中,其目标是创建满足当地社区能源需求的模块化解决方案,通常以最小10到20 MW增量的解决方案。此类技术为潜在的项目开发人员提供了从多种渠道探索当地燃料供应机会的能力。这些机会燃料涵盖了广泛的潜在能源,包括回收的塑料,回收的轮胎,家禽垃圾和各种木质生物质。由这种变化的机会燃料的气化产生的合成气包含许多不希望的痕量组分。这些成分将需要通过气体调节除去,或者在氧化步骤中与合成气一起燃烧,从而产生需要控制空气污染的烟道气。气体调节要求取决于合成气的所需最终用途而有所不同,无论是作为通用质量的燃料还是作为其他化学途径的中间产物。烟气目标水平由当前的环境法规定义。烟道中产生的潜在污染物包括颗粒物,氯化氢,二氧化硫,硫酸雾和氮氧化物。为了确保现在和将来系统堆栈排放的操作合规性,适当的污染控制技术至关重要。本演讲将介绍一种新兴的空气污染控制技术,该技术将所有这些去除步骤都体现在专门设计用于满足当前和预期的未来环境需求的单个设备中。 EISENMANN最近获得专利的多污染物控制系统,湿式静电除尘器双场或WESP-2F,包括使用预洗涤室来去除大量PM,SO2和水溶性NO2。在骤冷和预洗涤区域之后,经过特殊调整的向下流动的湿式ESP场负责更精细的PM和硫酸气溶胶去除,以及重要的臭氧生成阶段,该阶段会氧化非水溶性形式的NOx。随着气体继续流经系统,使用二级洗涤室通过使用静电除尘器产生的臭氧来洗涤由其他形式的NOx氧化形成的新形成的NO2,从而进一步还原NOx。该系统的最后抛光阶段包括一个上流湿式静电除尘器场,用于去除新氧化的材料以及存在的任何重金属。对上述系统的研究和测试是使用一个中型规模的装置进行的,该装置在20兆瓦商业规模的气化炉旁运行滑流,测试了许多机会燃料。预期的性能已得到验证,证明了前面特别提到的污染物的高去除效率。将讨论各种机会燃料的结果。该技术目前正在烟道气化后的气化项目中实施,目前被视为与工厂要求相关的环境法规的可接受解决方案。

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