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Achieving emissions compliant performance on conventional coal and gas boilers with minimal investment and without sacrificing flexibility or efficiency; through the application of advanced combustion engineering.

机译:实现常规煤气和燃气锅炉的排放性能,具有最小的投资,而不会牺牲灵活性或效率;通过高级燃烧工程的应用。

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The primary technology deployed to achieve NOx emissions compliance on fossil fuel fired boilers has been the installation of a staged firing system, incorporating Over Fire Air. Application of this technology has led to the development of many off-the-shelf products, which are only slightly adapted for each application. However, each boiler has unique requirements as a result of their design, age, geographic location, fuel, auxiliary plant system and their plant layout. Failure to account for these unique demands when retrofitting a low NOx firing system has, in many cases, produced adverse effects such as high CO or LOI, or limitations of boiler capacity and flexibility. Equally, where the firing system has been incapable of providing the required NOx performance, a flue gas treatment plant (SCR) has been required; which represents a huge capital investment, compounded by significant operational costs. These expenses, both performance and financial, can be avoided with the proper application of detailed engineering at the design stage. RJM International has been providing exactly that kind of solution to the power generation and process industries for many years, with over 60,000MWe of reference plant across a range of fuels and firing arrangements. Maintaining the boiler’s thermal profile through proper control of combustion can eliminate flexibility limitations which can result in high superheater temperatures of CO emissions. Similarly, the operating range of a boiler can often be expanded to allow operation at lower MSG, through new flame dynamics which accommodate stable combustion at lower turn- down. This paper explores the techniques used by our engineers to solve these challenges with innovative cost-effective solutions, centred on an analysis of 4 case studies.
机译:部署的主要技术实现NOx排放对化石燃料燃烧锅炉的符合性一直是安装分阶段的烧制系统,包括在火空上。该技术的应用导致了许多现成产品的开发,仅适用于每个应用。然而,每个锅炉由于其设计,年龄,地理位置,燃料,辅助植物系统及其植物布局而具有独特的要求。在改装低NOx烧制系统时未能考虑这些独特的需求,在许多情况下,产生的不利影响,例如高CO或LOI,或锅炉容量和灵活性的局限性。同样,在烧制系统无法提供所需的NOx性能的情况下,需要烟道气体处理厂(SCR);这代表了巨大的资本投资,通过重大运营成本复杂化。这些费用,绩效和财务都可以在设计阶段正确应用详细的工程来避免。 RJM International多年来一直提供对发电和工艺行业的一种解决方案,超过一系列燃料和射击安排超过60,000万辆的参考厂。通过适当控制燃烧保持锅炉的热曲线可以消除能够导致CO排放的高过热器温度的灵活性限制。类似地,通常可以扩展锅炉的操作范围以允许通过新的火焰动力学在下部Msg下操作,该火焰动力学在较低的折断下容纳稳定的燃烧。本文探讨了我们的工程师用来解决这些挑战的技术,以创新的成本效益解决方案为中心,以4个案例研究为中心。

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