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流化床燃烧器新型吸附剂再生技术的工业规模示范。

Industrial-scale demonstration of a new sorbent reactivation technology for fluidized bed combustors.

作者信息

Anthony Edward J, McCleave Robert, Gandolfi Eduardo, Wang Jinsheng

机构信息

CANMET Energy Technology Centre, Natural Resources Canada, 1 Haanel Drive, K1A 1M1, Ottawa Ont., Canada.

出版信息

J Environ Manage. 2003 Oct;69(2):177-85. doi: 10.1016/s0301-4797(03)00144-0.

Abstract

To minimize the disposal of highly reactive spent sorbent from a fluidized bed combustor, a new method for reactivation has been developed. The method consists of grinding the spent ash in a rotary mill, hydrating the ash with an excess of water, and mixing the wet ground ash with dry solids to absorb the excess water. The mixing process eliminates the formation of a concrete-like product that normally results as wet fluidized bed combustor ash ages. Pilot-scale combustion trials proved to be successful, and the process was scaled up using a 35MWt utility boiler at Purdue University. The test lasted for 3 days and resulted in net reduction of limestone sorbent use of 18%. The results generated in this work have been used to develop an economic evaluation for a 165MWe circulating fluidized bed (CFB) boiler, which projects significant savings due to reduction of limestone supply and ash disposal costs. The evaluation also suggests that the process is cost competitive with other processes, albeit that those processes have not been demonstrated at industrial scale. Furthermore, it also has the potential to make a small net reduction in CO(2) emissions, due to reduced limestone usage.

摘要

为了尽量减少流化床燃烧器中高活性废吸附剂的处置量,已开发出一种新的再生方法。该方法包括在旋转磨机中研磨废灰,用过量的水使灰水化,并将湿磨后的灰与干固体混合以吸收多余的水分。混合过程避免了形成通常在湿的流化床燃烧器灰老化时产生的类似混凝土的产物。中试规模的燃烧试验证明是成功的,并且该工艺在普渡大学使用一台35MWt的公用事业锅炉进行了放大。试验持续了3天,石灰石吸附剂的净使用量减少了18%。这项工作中产生的结果已用于对一台165MWe循环流化床(CFB)锅炉进行经济评估,该评估预计由于石灰石供应和灰处置成本的降低将节省大量资金。评估还表明,该工艺与其他工艺相比具有成本竞争力,尽管那些工艺尚未在工业规模上得到验证。此外,由于石灰石用量减少,它还有可能使二氧化碳排放量实现小幅净减少。

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