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通过超声处理增强流化床燃烧灰的水合作用。

The enhancement of hydration of fluidized bed combustion ash by sonication.

作者信息

Anthony E J, Jia L, Cyr L, Smith B, Burwell S

机构信息

CANMET Energy Technology Centre, Natural Resources Canada, Ottawa, Ontario.

出版信息

Environ Sci Technol. 2002 Oct 15;36(20):4447-53. doi: 10.1021/es011316p.

Abstract

The use of limestone to control SO2 emissions in fluidized bed combustors (FBC) results in high CaO content in the ashes. This presents challenges for their disposal including significant exothermic behavior and uncontrolled expansion in the landfill. Hydration of the ashes is required to convert the CaO, but the current two-step hydration process is not very effective. In the present work a new technique using ultrasound to promote the hydration was examined. Initial work was done using an ultrasonic bath and subsequently an ultrasonic probe. Hydration levels greater than 80% in 20-40 min with amplitudes of 40% or more were achieved with residues containing high levels of CaO. This is about twice what can be achieved using conventional hydration technique. Similar results were obtained using FBC ashes from four utility/industrial scale and one pilot plant scale FBC units. The mechanism for the promotion of hydration bythe ultrasound is also explored.

摘要

在流化床燃烧器(FBC)中使用石灰石控制二氧化硫排放会导致灰分中氧化钙含量较高。这给它们的处置带来了挑战,包括显著的放热行为和在垃圾填埋场中不受控制的膨胀。需要对灰分进行水化处理以转化氧化钙,但目前的两步水化过程效果不太理想。在本研究中,考察了一种利用超声波促进水化的新技术。最初的工作是使用超声浴进行的,随后使用了超声探头。对于氧化钙含量较高的残渣,在20 - 40分钟内,振幅为40%或更高时,水化程度达到了80%以上。这大约是使用传统水化技术所能达到的两倍。使用来自四个公用事业/工业规模和一个中试工厂规模的流化床燃烧器装置的FBC灰分也获得了类似的结果。还探讨了超声波促进水化的机理。

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