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首页> 外文期刊>Biomass & bioenergy >Reconstitution of dewatered food processing residuals with manure to increase energy production from anaerobic digestion
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Reconstitution of dewatered food processing residuals with manure to increase energy production from anaerobic digestion

机译:用粪便对脱水的食品加工残渣进行重组,以增加厌氧消化产生的能量

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摘要

Solid residuals generated from dewatering food processing wastewater contain organic carbon that can potentially be reclaimed for energy through anaerobic digestion. This results in the diversion of waste from a landfill and uses it for a beneficial purpose. Dewatering the waste concentrates the carbon, reducing transportation costs to a farm digester where it can be blended with manure to increase biogas yield. Polymers are often used in the dewatering of the food waste but little is known regarding their impact on biogas production. Four 2 dm3 working volume, semi-continuous reactors, were used at a meso-philic temperature and a solids retention time (SRT) of 15 days. Reactors were fed daily with a blended feedstock containing a food processing sludge waste (FPSW)/manure ratio of 2.2:1 (by weight) as this produced the optimized carbon to nitrogen ratio. Results demonstrated that reconstitution of dewatered FPSW with dairy manure produced approximately 2 times more methane than animal manure alone for the same volume. However, only approximately 30% of volatile solids (VS) were consumed indicating energy potential still remained. Further, the efficiency of the conversion of VS to methane for the blended FPSW/manure was substantially less than for manure only. However, the overall result is an increase in energy production for a given tank volume, which can decrease life cycle costs. Because all FPSW is unique and the determination of dewatering additives is customized based on laboratory testing and field adjustment, generalizations are difficult and specific testing is required.
机译:脱水食品加工废水产生的固体残留物含有有机碳,可通过厌氧消化将其回收为能源。这导致废物从垃圾填埋场转移,并将其用于有益的目的。对废物进行脱水可以浓缩碳,从而减少了向农场沼气池的运输成本,在沼气池中可以与粪便混合以提高沼气产量。聚合物通常用于食物垃圾的脱水,但对它们对沼气生产的影响知之甚少。在中温温度和15天的固体保留时间(SRT)下使用了四个2 dm3工作体积的半连续反应器。每天向反应器中加入混合原料,其中包含食品加工污泥(FPSW)/粪便比率为2.2:1(按重量计),因为这样可以产生最佳的碳氮比。结果表明,在相同体积下,用乳牛粪对脱水的FPSW进行复水产生的甲烷比单独使用动物牛粪多出约2倍的甲烷。但是,仅消耗了约30%的挥发性固体(VS),表明仍保留了能量势。此外,对于混合的FPSW /粪肥,VS转化为甲烷的效率大大低于仅粪肥。但是,总的结果是在给定的油箱容积下增加了能源生产,这可以降低生命周期成本。由于所有FPSW都是唯一的,并且脱水添加剂的确定是根据实验室测试和现场调整进行定制的,因此难以进行概括,因此需要进行特定的测试。

著录项

  • 来源
    《Biomass & bioenergy》 |2012年第11期|429-434|共6页
  • 作者单位

    The Centre for Process Innovation (CPI), Wilton Centre, Redcar, Cleveland TS10 4RF, United Kingdom;

    Department of Biosystems and Agricultural Engineering, Michigan State University, Farrall Agriculture Engineering Hall, Room 212, 524 S Shaw Lane, East Lansing, MI 48824, USA;

    Department of Biosystems and Agricultural Engineering, Michigan State University, Farrall Agriculture Engineering Hall, Room 212, 524 S Shaw Lane, East Lansing, MI 48824, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    anaerobic co-digestion; animal manure; food processing wastewater; sludge dewatering; polymers;

    机译:厌氧消化动物粪便食品加工废水;污泥脱水聚合物;

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