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Transformation of the Fe-mineral associations in coal during gasification

机译:气化过程中煤中铁-矿物缔合的转变

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摘要

The mineral matter associated with coal undergoes various transformations during the coal gasification process. Optimisation of the gasification process is necessary in the coal to liquids technology. The principle aim of this investigation was to determine the changes that the Fe-containing minerals and mineral associations undergo during gasification of coal. Due to the complexity of the counter-current coal-gas process used, a gasifier dissection was undertaken on one of the Sasol gasifiers. Detailed characterisation profiles of various properties of the coal were undertaken after a commercial-scale gasifier was shutdown for routine maintenance of which the Mossbauer spectroscopy technique will be described here. Representative samples from the gasifier were extracted after sufficient cooling was done to allow the safe turn-out of the gasifier. In the coal samples that entered the gasifier, pyrite was the abundant Fe-containing mineral, whilst the pyrite changed gradually to form, in conjunction with the SiO2 and Al2O3 present in the coal, a Fe-containing glass and hematite at the bottom, or ash grate of the gasifier.
机译:与煤有关的矿物质在煤气化过程中经历各种转变。在煤制油技术中,气化工艺的优化是必要的。这项研究的主要目的是确定煤气化过程中含铁矿物和矿物缔合所经历的变化。由于所使用的逆流煤气工艺的复杂性,萨索尔气化炉之一进行了气化炉解剖。在为日常维护而关闭商业规模的气化炉之后,进行了煤的各种特性的详细表征曲线,此处将描述Mossbauer光谱技术。充分冷却后,从气化炉中提取代表性样品,以便安全关闭气化炉。在进入气化炉的煤样品中,黄铁矿是丰富的含铁矿物,而黄铁矿逐渐变化形成,与煤中存在的SiO2和Al2O3一起,在底部形成了含铁玻璃和赤铁矿,或者气化炉的灰炉排。

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