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Pyrolysis and combustion of pulp mill lime sludge

机译:制浆厂石灰渣的热解与燃烧

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Thermal degradation and gaseous products evolving from pyrolysis and combustion of pulp mill lime sludge were investigated using Thermogravimetric Analysis in conjunction with Fourier Transform Infrared Analysis (TG-FTIR). The materials were studied in temperatures ranging from 25 to 1000 ℃. The addition of calcium carbonate caused a decrease in S-containing compounds that evolved from the sludge combustion. The temperature range for decomposition by pyrolysis is higher than for decomposition by combustion. FTIR spectra of the gases evolved show considerable amounts of CO_2, in addition to HNCO and CH_4 absorptions. NH_3 gas was not detected, and sulfur and nitrogen-containing gases only developed in insignificant amounts. The sludge combustion presents two maxima pattern, determined by the CO_2 and H_2O evolution, that could be associated to the flaming of volatile matter - for the first maximum -followed by a glowing of the fixed carbon - for the second maximum. Results show that pulp mill lime sludge can be used as an alternative energy source if pollutant gases and heat expended from dewatering are carefully managed.
机译:使用热重分析和傅里叶变换红外分析(TG-FTIR),研究了纸浆厂石灰污泥热解和燃烧产生的热降解和气体产物。在25至1000℃的温度下对材料进行了研究。碳酸钙的添加导致了由污泥燃烧产生的含S化合物的减少。通过热解分解的温度范围高于通过燃烧分解的温度范围。放出的气体的FTIR光谱显示,除了HNCO和CH_4吸收外,还有大量的CO_2。未检测到NH_3气体,仅产生了少量的硫和含氮气体。污泥燃烧呈现出两个最大值模式,这取决于CO_2和H_2O的释放,这可能与挥发性物质的燃烧有关-第一个最大值-其次是固定碳的发光-第二个最大值。结果表明,如果认真管理脱水过程中产生的污染物气体和热量,可以将纸浆厂的石灰污泥用作替代能源。

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