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Biogas as a co-firing fuel in thermal processing industries: implementation in a glass melting furnace

机译:沼气作为热处理行业的共用燃料:在玻璃熔炉中的实施

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In many energy-intensive manufacturing processes, natural gas is the dominant fuel to provide process heat. There is increasing pressure, however, to reduce both fuel costs and carbon dioxide (CO2) emissions. One possible approach in this regard is the use of mostly untreated biogas as a fuel in a co-firing approach. While the use of such biogas can decrease both natural gas consumption and overall CO2 emissions (biogas is considered to be a CO2-neutral fuel), there is concern how this change of fuel will impact on product quality, combustion behavior and the refractory material. Trace contaminations in the biogas are one aspect in this context which might have a negative impact on product quality or the durability of the refractory of industrial furnaces. In a previous research project, GWI and its partners investigated the principal applicability of biogas combustion, using the glass melting process as an example. It was found that there was no negative impact on combustion behavior, product quality or refractory properties if the process is adapted to the different characteristics of the fuel, for example by adjusting melting times. Another result wasthat for existing plants, it is more sensible to use a co-firing approach, partly substituting natural gas by biogas, instead of switching fuels completely. Consequently, the co-firing of roughly de-sulphurized biogas in an industrial glass melting furnace in Germany is currently being investigated as part of a follow-up project. Aspects such as pollutant formation, energy efficiency and product quality when using untreated biogas on an industrial scale will be examined.
机译:在许多能量密集型制造工艺中,天然气是提供过程热量的主导燃料。然而,压力越来越大,以降低燃料成本和二氧化碳(CO2)排放。在这方面的一种可能的方法是在共用方法中使用主要未经处理的沼气作为燃料。虽然这种沼气的使用可以降低天然气消耗和整体二氧化碳排放(沼气被认为是CO2-中性燃料),但涉及这种燃料变化如何影响产品质量,燃烧行为和耐火材料。沼气中的痕量污染是在这种情况下的一个方面,这可能对产品质量或工业炉的耐火材料的耐用性产生负面影响。在先前的研究项目中,GWI及其合作伙伴使用玻璃熔化过程调查了沼气燃烧的主要适用性,以玻璃熔化过程为例。发现如果该方法适应燃料的不同特性,则没有对燃烧行为,产品质量或耐火性能的负面影响,例如通过调节熔化时间。另一种结果是现有植物的结果,使用共同烧制方法,部分地用沼气替代天然气,而不是完全切换燃料。因此,目前正在调查德国工业玻璃熔炉中大致解除硫化沼气的共射,作为随访项目的一部分。将研究在工业规模上使用未处理的沼气时污染物形成,能量效率和产品质量等方面。

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