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Physicochemical Transformations of Mixed Fuels Based on Typical Coals and Wood upon Heating

机译:基于典型煤和木材加热时混合燃料的物理化学改造

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The thermal decomposition of the mixtures of two types of dispersed coals and shredded wood in a temperature range until the complete pyrolysis of the organic matter of both components at different concentrations was experimentally studied in order to evaluate the prospects of using these fuels as composite fuels for large- and small-scale power plants (combustion in the furnaces of steam and hot-water boilers). Itwas established that the joint thermal decomposition of a mixture of coal and wood particles leads to a significant change in the pyrolysis temperature range and the release of anthropogenic gases (sulfur and nitrogen oxides) in the case of the high-temperature heating of such a mixture based on lean coal. A similar effect, but on a much smaller scale, was detected for a mixture based on long-flame coal. A hypothesis on the mechanism of sequestering sulfur and nitrogen oxides on the thermal decomposition of a mixture of lean coal and wood particles as a result of the interaction of intermediate gaseous and solid products of coal and wood pyrolysis in a temperature range to 1000 degrees C was formulated. The possibility of using a mixture of crushed coal and wood as fuel for steam and hot water boilers was substantiated. With a certain decrease in the energy characteristics of such fuels compared to homogeneous coals, the environmental and economic characteristics of fuel burning processes were significantly improved. It was shown that a significant synergistic effect of co-combustion of particles of coal and wood is achieved only in certain coals.
机译:在实验研究中,在温度范围内两种分散煤和切碎木材的混合物的热分解在不同浓度下的两种组分的有机物质的完全热解,以评估使用这些燃料作为复合燃料的前景大型和小型发电厂(蒸汽和热水锅炉炉中的燃烧)。 ITWAS建立了煤和木材颗粒混合物的关节热分解导致热解温度范围的显着变化和在这种混合物的高温加热的情况下的热解温度范围和释放人为气体(硫和氮氧化物)基于瘦煤。对于基于长火煤的混合物来检测类似的效果,但在更小的尺度上。在温度范围内的温度范围内的中间气态和固体产物的相互作用的结果中螯合硫和氮氧化物对贫煤和木质颗粒混合物热分解的假设。配制。实质上使用碎煤和木材混合物作为蒸汽和热水锅炉的燃料的可能性。对于与均质煤相比,这种燃料的能量特性的一定程度降低,燃料燃烧过程的环境和经济特征得到了显着改善。结果表明,仅在某些煤中实现了煤和木颗粒的共燃烧的显着协同效应。

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