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Co-firing Of Biomass Waste-derived Syngas In Coal Power Boiler

机译:燃煤锅炉生物质废料合成气的共烧

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The paper deals with waste gasification as a technology allowing for indirect co-firing of large quantities of biodegradable wastes in coal-fired power boilers. In contrast to common landfilling and direct co-firing, gasification of wastes presents a number of advantages. Problematic species in original feedstocks can be partly safely incinerated in the furnace and partly retained in the gasification residues. The paper focuses on the impact of indirect co-firing on basic boiler parameters and performance. The work carried out was in the form of a case study for co-firing LCV gas in a 230 t/h dual fuel pulverized coal-gas fired boiler. Thermal shares of 10, 20 and 40% have been investigated for two extreme LCV gas qualities represented in the calculations by its calorific value of 2.0 and 8.5 MJ/m_n~3 respectively, thus six calculation cases are given. The results of the study reveal that even high thermal shares of LCV gas may be achieved for co-firing of better quality gas without significant effects on boiler operation. For lower quality gas, even a 10% thermal share influenced boiler operation to a great extent. This paper also gives consideration in relation to avoided CO_2 emissions accomplished via indirect co-firing.
机译:该论文将废物气化技术作为一种技术,允许在燃煤动力锅炉中间接共燃大量可生物降解的废物。与普通的垃圾填埋和直接共烧相比,废物的气化具有许多优势。原始原料中存在问题的物质可以部分安全地在炉中焚化,部分保留在气化残渣中。本文着重研究间接共燃对锅炉基本参数和性能的影响。进行的工作是以案例研究的形式进行的,该案例是在230吨/小时的双燃料粉煤燃气锅炉中共同燃烧LCV气体。对于计算中两个极端的LCV气体质量,分别以其发热量2.0和8.5 MJ / m_n〜3表示,研究了10%,20%和40%的热份额,因此给出了六个计算案例。研究结果表明,即使在不对锅炉运行产生重大影响的情况下,也可以实现更高质量的LCV燃气共烧,以共同燃烧更高质量的燃气。对于较低质量的气体,即使10%的热份额也会在很大程度上影响锅炉的运行。本文还考虑了通过间接共燃避免的CO_2排放。

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