废燃料的颗粒大小、热值、水分和灰分含量的相关性及其重金属含量的检验

C. Leitol, Alexandra Győrfi, T. Kiss
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引用次数: 1

摘要

最近在废物管理领域,在准备大力利用可回收的、无害的城市固体废物方面取得了重大发展。通过机械-生物废物处理,可以使35-40%的废物重量适合于能源利用,主要用于水泥厂和发电厂的共焚烧。机械-生物废物处理厂产生的废物衍生燃料的可回收性在很大程度上取决于混合物的燃烧和燃烧技术特性,以及影响燃烧和不同排放的化合物。废物回收设施不接受低于特定热值和超过给定重金属、卤素和污染物含量的燃料。在我们的研究中,我们正在寻找废料衍生燃料的颗粒大小、热值、水分、灰分和重金属含量之间的相关性。根据测量结果,可以清楚地说明粒度分数与燃料性能之间的关系。粒径越小的馏分含水量、灰分和重金属含量越高,粒径越大的馏分热值越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The correlations of the particle size, calorific value, moisture- and ash content of waste derived fuel, and examination of its heavy metal content
Significant development has taken place in the field of waste management recently in the preparation of the energetic exploitation of recyclable, non-hazardous municipal solid waste. With mechanical-biological waste treatment, 35-40% of the weight of this waste can be made appropriate for energetic exploitation, mainly for co-incineration in cement factories and power plants. The recoverability of waste derived fuel produced in mechanical-biological waste treatment plants highly depends on the burning and combustion technological properties of the mixture, and on its compounds influencing burning and different emissions. Waste recovery facilities do not take over fuel below a specific calorific value and over a given heavy metal, halogen and pollutant content. In our research we were looking for correlations in the particle size, calorific value, moisture-, ash- and heavy metal content of waste derived fuel. On the basis of the measurement results, the connection between the particle size fractions and the fuel properties can clearly be stated. The fractions of smaller particle size have higher moisture-, ash- and heavy metal content, while the fractions of bigger particle size have higher calorific value.
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