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Technical review of multi-fuel bubbling fluidised bed boilers for paper industry wastes, with predictive models for metals and dioxin emissions

机译:造纸工业废弃物多燃料呼吸床锅炉技术综述,具有预测模型,用于金属和二恶英排放

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The combustion of sludges in fluidised beds is widely and successfully practised in the paper industry. The extent of burnout is good, with a high conversion of carbon. Very wet sludges have been treated with the use of natural gas as auxiliary fuel. No report of furnace degradation has been found in a literature search. Fouling is possible in the downstream heat exchangers due to the deposition of clay-derived calcium compounds, but these can be readily removed. Acid gases are absorbed at >90 % efficiency with lime. The SNCR deNO_x system can be expected to give around 50 % reduction in NO emissions under typical operating conditions. The clay particles released by the paper feed tend to agglomerate into multi-micron size aggregates which are readily filtered. As trace metals are found almost exclusively on the particulates, good paniculate removal, as in a fabric filter, will ensure low metal emissions. Gaseous mercury will be adsorbed at 80 to 90 % efficiency by the addition of activated carbon, which also removes PCDD/F. Two simple, empirical mathematical models are described - one for trace metal emissions from a furnace, and the other for PCDD/F formation. The models are applied to two combustion applications relevant to sludge combustion. In each case the output predicts that the operation will meet standard emission limits.
机译:流化床污泥的燃烧广泛且成功地在造纸工业中实践。倦怠程度良好,碳转化高。使用天然气作为辅助燃料处理非常湿污泥。在文献搜索中没有发现炉子退化的报告。由于粘土衍生的钙化合物的沉积,在下游热交换器中可能在下游热交换器中进行污垢,但这些可以容易地除去这些。酸性气体用石灰吸收> 90%的效率。可以预期SNCR DenO_X系统,在典型的操作条件下,无排放量减少约50%。供纸释放的粘土颗粒倾向于聚集成易于过滤的多微米尺寸的聚集体。作为几乎完全发现痕量金属的痕量金属,良好的容量去除,如织物过滤器,将确保低金属排放。通过加入活性炭,气体汞将在80至90%的效率下吸附,这也消除了PCDD / F.描述了两个简单的经验数学模型 - 一种用于熔炉的痕量金属排放,另一个用于PCDD / F形成。该模型适用于与污泥燃烧相关的两个燃烧应用。在每种情况下,输出预测操作将满足标准排放限制。

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