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Pilot-Scale Fluidized-Bed Combustor Testing Cofiring Animal-Tissue Biomass with Coal as a Carcass Disposal Option

机译:中试流化床燃烧器测试以煤为Animal体处置选项的动物组织生物质燃烧

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摘要

This study was performed to demonstrate the technical viability of cofiring animal-tissue biomass (ATB) in a coal-fired fluidized-bed combustor (FBC) as an option for disposing of specified risk materials (SRMs) and carcasses. This is a potential option for beneficially utilizing SRMs and carcasses that must be removed from the food chain, allowing them to be used as an energy feedstock rather than disposing them via landfilling or incineration. The purpose of this study was to assess the technical issues of feeding/combusting ATB and not to investigate priori deactivation/pathogen destruction. Overall, the project successfully demonstrated that carcasses and SRMs can be cofired with coal in a bubbling FBC. Feeding ATB into the FBC did, however, present several challenges. Specifically, handling/feeding issues resulting from the small scale of the equipment and the extremely heterogeneous nature of the ATB were encountered during the testing. Feeder modifications and an overbed firing system were necessary. Through statistical analysis, it was shown that the ATB feed location had a greater effect on CO emissions, which were used as an indication of combustion performance, than the fuel type due to the feeding difficulties. Baseline coal tests and tests cofiring ATB into the bed were statistically indistinguishable. Fuel feeding issues would not be expected at the full scale since full-scale units routinely handle low-quality fuels. In a full-scale unit, the disproportionate ratio of feed line size to unit diameter would be eliminated thereby eliminating feed slugging. Also, the ATB would either be injected into the bed, thereby ensuring uniform mixing and complete combustion, or be injected directly above the bed with overfire air ports used to ensure complete combustion. Therefore, it is anticipated that a demonstration at the full scale, which is the next activity in demonstrating this concept, should be successful. As the statistical analysis shows, emissions cofiring ATB with coal would be expected to be similar to that when firing coal only.
机译:进行这项研究的目的是证明在燃煤流化床燃烧器(FBC)中共烧动物组织生物量(ATB)的技术可行性,作为处置特定危险物质(SRM)和屠体的一种选择。这是有益地利用必须从食物链中去除的SRM和屠体的潜在选择,允许将它们用作能源原料,而不是通过填埋或焚化的方式进行处置。这项研究的目的是评估喂养/燃烧ATB的技术问题,而不是研究先验失活/病原体破坏。总体而言,该项目成功证明了可以在沸腾的FBC中将car体和SRM与煤共烧。但是,将ATB馈入FBC确实带来了一些挑战。具体而言,在测试过程中会遇到由于设备规模小和ATB的异质性导致的处理/进料问题。进料器的修改和跨层燃烧系统是必要的。通过统计分析表明,由于进料困难,ATB进料位置对CO排放的影响要比燃料类型对CO排放的影响大,CO排放被用作燃烧性能的指标。基准煤试验和将ATB混入煤层的试验在统计上是无法区分的。由于全尺寸机组通常会处理低质量的燃油,因此在全尺寸范围内不会出现燃油供给问题。在满量程的设备中,可以消除进料管线尺寸与单位直径的不成比例的比率,从而消除了进料结团。同样,ATB要么注入到床中,从而确保均匀混合并完全燃烧,要么直接在床上方注入带有用于确保完全燃烧的过火气口。因此,可以预见的是,大规模的示范活动将是成功的,这是证明这一概念的下一个活动。统计分析表明,将ATB与煤共烧的排放量与仅燃烧煤时的排放量相似。

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