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引用次数: 0

摘要

在研究、设计和制造生物质炉共燃气化模型时,以实现燃烧过程的送风量为目标,这里的第一阶段是燃烧/燃烧过程,因此存在多余的氧气,即多余的空气重量> 1。下一阶段为气化,即厌氧燃烧,因此燃烧过程的含氧量为缺氧,即多余空气的重量< 1。正是这种同时燃烧和气化的结合,才能使能量转换过程获得更高的热效率。在本报告中,我们对该炉的“模型”和同步气化的实验研究成果进行了总结,并对燃烧过程中产生的气体质量、炉内达到的火焰温度、炉的热容量以及为燃烧过程提供的气流的选择进行了评价。本研究所采用的炉型与气化炉型同时使用,可用于家庭规模或家庭规模的农产品干燥,也可用于中等规模的农产品加工机构/企业,适用于越南农村和/或山区条件。
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Experimental Survey of Co-Combustion and Gasification of Biomass Furnace
When researching, designing and manufacturing a model of Co-combustion and gasification of biomass furnace with the goal of achieving the amount of air supplied for the combustion process, here the first stage is combustion/burning process, so there is excess oxygen, which means excess air  > 1.The next stage is gasification, i.e. anaerobic combustion, so the oxygen content of the combustion process is anoxic, which means that the excess air is  < 1. It is the combination of such simultaneous combustion and gasification that the energy conversion process will achieve higher thermal efficiency. In this report, we present a summary of experimental research results on the "model" of the furnace and simultaneous gasification, the results of evaluating the quality of the gas generated from the combustion process, the achieved flame temperature inside the furnace, the heat capacity of the furnace and the selection of the air flow provided for the combustion process. With the type of furnace and gasifier at the same time in this research, it can be used for drying agricultural products of household scale, or group of households, or used for medium scale at agricultural product processing establishments/enterprises and suitable for rural and/or mountainous conditions in Vietnam.
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