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Experimental study on the load response rate under the dynamic combined combustion of PC coal and CFB coal in a CFB boiler

机译:CFB锅炉中PC煤与CFB煤动态联合燃烧负荷响应率的实验研究。

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摘要

The load response rate of the circulating fluidized bed (CFB) boiler is low for its great thermal inertia. In order to increase its load response rate, a new dynamic combined combustion technology featuring co-combustion of CFB coal and pulverized coal (PC) with high gross calorific value (GCV) is put forward. This combined combustion system was set up on a 240 t/h CFB boiler, and PC coal spraying positions, heating values, and heat ratios were evaluated for their effects on load response rate and combustion performance of the CFB boiler. When PC coal is fed from the secondary air pipes, the relative load change rates (RLCRs) exceed 2.0%/min and meet the requirement RLCR for power dispatching (1.5%/min), and the maximum RLCR is 3.69%/min. Moreover, the weighted average of carbon in residue decreases, and the original NOX emission of CFB boiler increases less than 40 mg/Nm(3). Results indicate that the dynamic combined combustion of CFB coal and PC coal with higher GCV fed through secondary air pipes in CFB boiler is a feasible technology to increase its relative load response rate.
机译:循环流化床(CFB)锅炉的负载响应率低,因为它具有很大的热惯性。为了提高其负荷响应率,提出了一种新的动态联合燃烧技术,该技术将高热值(GCV)的CFB煤和粉煤(PC)混合燃烧。该组合燃烧系统安装在240 t / h CFB锅炉上,并评估了PC喷煤位置,发热量和热比对CFB锅炉负荷响应率和燃烧性能的影响。从二次风管中注入PC煤时,相对负荷变化率(RLCR)超过2.0%/ min,满足电力分配的RLCR要求(1.5%/ min),最大RLCR为3.69%/ min。而且,残渣中碳的加权平均值降低,CFB锅炉的原始NOX排放增加到不足40 mg / Nm(3)。结果表明,CFB煤和PC煤与更高GCV的动态混合燃烧通过CFB锅炉中的二次空气管道输送是提高其相对负荷响应率的可行技术。

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