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SO2 Release as a Consequence of Alternative Fuel Combustion in Cement Rotary Kiln Inlets

机译:sO 2 释放作为水泥回转窑进口中替代燃料燃烧的后果

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摘要

The combustion of alternative fuels in direct contact with the bed material of the rotary kiln may cause local reducing conditions and, subsequently, decomposition of sulfates from cement raw materials, increasing the SO concentration in the gas phase. The decomposition of sulfates increases the sulfur circulation and may be problematic because high sulfur circulation can cause sticky material buildup, affecting the process operation of the cement kiln system. The SO release from cement raw materials during combustion of pine wood and tire rubber has been studied experimentally in a high-temperature rotary drum, focusing on the influence of the fuel particle size and volatile content. The SO release increased with a decreasing fuel particle size and with an increasing fuel volatile content. Furthermore, CO, H, and CH, which are the main reducing gases released during fuel devolatilization, were introduced in different concentrations under the bed material. A threshold concentration for each reducing gas, below which no SO release occurs, was found. Introduction of the same molar amount of gas in different concentrations during different time periods showed that a higher reducing gas concentration during a short period (representing fuel devolatilization) released a higher total SO amount compared to a lower concentration during a long period (representing fuel char oxidation).
机译:与回转窑床层材料直接接触的替代燃料的燃烧可能会导致局部还原条件,并随后导致水泥原料中的硫酸盐分解,从而增加气相中的SO浓度。硫酸盐的分解会增加硫的循环,并且可能会产生问题,因为高的硫循环会导致粘性物料堆积,从而影响水泥窑系统的工艺运行。已经在高温转鼓中对松木和轮胎橡胶燃烧过程中水泥原料中的SO释放进行了实验研究,重点研究了燃料粒径和挥发物含量的影响。随着燃料颗粒尺寸的减小和燃料挥发物含量的增加,SO释放量也增加。此外,CO,H和CH是燃料挥发过程中释放的主要还原性气体,它们以不同的浓度引入床层材料下方。发现每种还原气体的阈值浓度,低于此浓度则不会发生SO释放。在不同时间段内以不同浓度引入相同摩尔浓度的气体表明,与较长时期内较低浓度的气体(代表燃料焦炭)相比,短期内较高浓度的还原气体浓度(代表燃料挥发)释放出较高的总SO量。氧化)。

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