首页> 外文会议>ASME international mechanical engineering congress and exposition >FLUIDIZED BED AIR GASIFICATION USING LOW HEATING VALUE SAND-BEDDED DAIRY MANURE AND SLUDGE PELLETS
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FLUIDIZED BED AIR GASIFICATION USING LOW HEATING VALUE SAND-BEDDED DAIRY MANURE AND SLUDGE PELLETS

机译:使用低热值砂磨乳制品和污泥球的流化床气化

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Solid manure handling is a major environmental issue confronting animal facilities in the United States. One difficulty in using dairy manure as a fuel source is the presence of sand bedding used for lactating dairy cows. More than 30% of dairy farms use sand beds for a dry and clean environment that prevents bacterial growth. In this study, dairy animal manure obtained directly from waste lagoons was used for the air gasification process. The manure was dried to reduce the moisture down to 5% and a sand separating system was designed to remove some sand bedding materials. Preliminary air gasification experiments showed that the direct use of dairy manure containing 75% ash content, that reflect high sand content, reduced the temperature of the reactor. The study is also aimed at handling unprocessed dairy manure and generating electric power for the on-site use. A high heating value manure is needed to run the gasifier and the produced synthesis gas (or syngas) is fed to an engine coupled with a generator. Some dairy manure gasification work were done using fresh dairy manure. The highest heating value from the dairy manure biomass was found to be 4.5MJ/kg in a fixed-bed gasifier. Another gasification study using a fluidized-bed reactor could produce syngas heating value as high as 4.7MJ/m~3 from dairy manure. A bench-scale fluidized bed containing a 3-inch diameter reactor tube with a cyclone and a scrubber was used to gasify dairy manure using air at different temperatures. The sand separated dairy manure used in this study contained approximately 45% ash content. The maximum heating value of the synthesis gas was 3.8MJ/m~3 at an operating temperature of 750°C. The syngas will need to be upgraded. To upgrade the synthesis gas heating value, sludge pellets of 18.7MJ/kg were mixed with the dairy manure in different ratios of 10% and 30%. The syngas heating values from mixed manure with sludge pellet were increased to 5MJ/m~3 with 10% sludge, and 5.7MJ/m~3 with 30% sludge. The sludge used has higher heating value resulting in higher gas HV. The cold gasification efficiency was achieved as high as 36±5% with dairy manure mixed with sludge pellet. At a higher operating temperature, higher efficiency was obtained with increased gas composition of hydrogen and carbon monoxide. This syngas may then be used for power generation as well as possible input gas for the Fisher Tropsch process for liquid biofuel production. The result of the experiments will be a cornerstone for the widespread application of low heating value animal waste for producing high heating value syngas that may be used for electric power generation as a result of various upgrading processes.
机译:固体肥料处理是美国动物设施面临的主要环境问题。使用奶牛粪便作为燃料的一个困难是存在用于泌乳奶牛的沙床。超过30%的奶牛场将沙床用于干燥清洁的环境,以防止细菌滋生。在这项研究中,直接从废泻湖获得的奶牛粪便用于空气气化过程。将粪肥干燥以将水分降低至5%,并设计了砂分离系统以去除一些砂层材料。初步的空气气化实验表明,直接使用含灰分含量为75%的乳牛粪,反映出高的含沙量,降低了反应器的温度。该研究的目的还在于处理未加工的乳牛粪肥并为现场使用发电。需要高热值肥料来运行气化炉,并且将产生的合成气(或合成气)送入与发电机相连的发动机。使用新鲜的奶肥进行了一些奶肥的气化工作。在固定床气化炉中,发现来自奶牛粪便生物质的最高发热量为4.5MJ / kg。另一项使用流化床反应器的气化研究可以从乳牛粪中产生高达4.7MJ / m〜3的合成气热值。使用包含3英寸直径的带旋风除尘器和洗涤塔的反应器管的台式流化床,使用不同温度的空气对奶牛粪便进行气化。在本研究中,用沙子分离的奶牛粪便含有约45%的灰分。在750℃的工作温度下,合成气的最大发热量为3.8MJ / m〜3。合成气将需要升级。为了提高合成气的热值,将18.7MJ / kg的污泥颗粒以10%和30%的不同比例与奶牛粪便混合。污泥含量为10%的混合粪肥与污泥颗粒的合成气发热量分别提高到5MJ / m〜3和30%的污泥增加到5.7MJ / m〜3。所使用的污泥具有较高的热值,从而导致较高的气体HV。奶牛粪便与污泥颗粒混合后,冷气化效率高达36±5%。在较高的工作温度下,随着氢气和一氧化碳气体成分的增加,可以获得更高的效率。然后,该合成气可以用于发电,也可以将可能的输入气用于费舍尔·托普施过程的液体生物燃料生产。实验的结果将成为低热值动物废物广泛应用的基础,以产生高热值合成气,这些高合成气可通过各种升级过程用于发电。

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