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燃烧温度对全尺寸流化床污泥焚烧中空气排放物和辅助燃料消耗的影响:特别关注氮氧化物和总有机碳。

Effects of combustion temperature on air emissions and support fuel consumption in full scale fluidized bed sludge incineration: with particular focus on nitrogen oxides and total organic carbon.

机构信息

wandschneider + gutjahr ingenieurgesellschaft mbh, Hamburg, Germany.

出版信息

Waste Manag Res. 2018 Apr;36(4):342-350. doi: 10.1177/0734242X18755895. Epub 2018 Feb 16.

Abstract

This article describes a pilot test at a sewage sludge incineration plant and shows its results considering the impacts of reducing the minimum combustion temperature from 850°C to 800°C. The lowering leads to an actual reduction of the average combustion temperature by 25 K and a significant reduction in the fuel oil consumption for support firing. The test shall be used for providing evidence that the changed combustion conditions do not result in higher air pollutant emissions. The analysis focusses on the effects of the combustion temperature on nitrogen oxides (NO) and total organic carbon emissions. The evaluation of all continuously monitored emissions shows reduced emission levels compared to the previous years, especially for NO.

摘要

本文描述了在一家污水污泥焚烧厂进行的试点测试,并展示了考虑将最低燃烧温度从 850°C 降低至 800°C 时的结果。这一降低导致实际平均燃烧温度降低了 25K,并显著减少了支持燃烧所需的燃油消耗。该测试旨在提供证据,证明改变的燃烧条件不会导致更高的空气污染物排放。分析侧重于燃烧温度对氮氧化物(NO)和总有机碳排放的影响。对所有连续监测排放物的评估表明,与前几年相比,排放水平降低了,尤其是 NO。

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