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Evaluation of biogas generation from turkey waste.

机译:评估土耳其废物产生的沼气。

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摘要

This project investigates local industrial biomass streams as feedstocks for the generation of low-cost sustainable energy for The University of Iowa. Methane gas produced during anaerobic digestion would fuel an engine to generate electricity at the University of Iowa Research Park (Oakdale Campus). A current local industry identified for this project is West Liberty Foods (WLF), a turkey processing facility located in West Liberty, Iowa, USA. WLF generates about 6,000 gal/day of blood, 40,000 lb/day of offal (guts), 6,000 lb/day of sludge (process waste water) and 2-4 truckloads/day of feathers as waste streams. To investigate biochemical methane potential, mixed streams and individual streams of WLF were processed anaerobically and incubated at 35°C. Mixed streams contained blood, offal, and sludge, and individual streams contained offal and sludge. Mixed streams and individual streams generated methane gas. The methane production from mixed streams was achieved on the 11th day of processing, and it was achieved on the 9th day from individual streams. Sludge was the only stream that did not require the addition of acetate for the production of methane gas. Methane production was analyzed using gas chromatography. Methane production was achieved without addition of microbial seed cultures. Cumulative methane and energy produced by the 36th day of processing 6 grams of offal with the addition of acetate are 110 +/- 50 mmol/lb and 0.09 +/- 0.04 kJ/lb respectively, and without the addition of acetate are 62 +/- 2 mmol/lb and 0.054 +/- 0.002 kJ/lb respectively. Cumulative methane and energy produced by the 36 th day of processing 6 grams of sludge with the addition of acetate are 200 +/- 20 mmol/lb and 0.18 +/- 0.02 kJ/lb respectively, and without the addition of acetate are 220 +/- 60 mmol/lb and 0.19 +/- 0.04 kJ/lb respectively. Each average was calculated from three data points with their errors. Reported values are calculated at 95% confidence intervals. The Oakdale Campus is estimating to produce 5.5 MW energy from renewable sources of energy. The methane production capacity from processing turkey waste based on COD analysis was approximately 1% of the renewable energy target. However, the system is still producing methane gas and the process is not complete yet nor has it been optimized. Benchmarking methane productivity through improved quantitative measures should continue to establish the utility of the process.
机译:该项目研究了当地工业生物质流作为原料,为爱荷华大学生产低成本的可持续能源。厌氧消化过程中产生的甲烷气体将为爱荷华大学研究园(奥克代尔校区)的发动机供能。目前为该项目确定的当地产业是西自由食品(WLF),这是一家位于美国爱荷华州西自由的火鸡加工设施。 WLF每天产生约6,000加仑/天的血液,40,000磅/天的内脏(肠),6,000磅/天的污泥(工艺废水)和2-4卡车/天的羽毛作为废物流。为了研究生物化学甲烷的潜力,厌氧处理混合流和WLF的各个流,并在35°C下孵育。混合流包含血液,内脏和污泥,个别流包含内脏和污泥。混合流和单个流产生甲烷气。在处理的第11天从混合流中生产甲烷,而在第9天从单个流中生产甲烷。污泥是唯一不需要添加乙酸盐即可生产甲烷气的物流。使用气相色谱法分析甲烷的产生。不添加微生物种子培养物即可实现甲烷生产。在处理的第36天,产生的甲烷和产生的能量6克内脏(添加乙酸盐)分别为110 +/- 50 mmol / lb和0.09 +/- 0.04 kJ / lb,未添加乙酸盐的情况下为62 + / -2 mmol / lb和0.054 +/- 0.002 kJ / lb。在处理的第36天,累积的甲烷和产生的能量为6克污泥(添加乙酸盐)分别为200 +/- 20 mmol / lb和0.18 +/- 0.02 kJ / lb,未添加乙酸盐的情况下为220 +分别为60 mmol / lb和0.19 +/- 0.04 kJ / lb。从三个数据点及其误差计算出每个平均值。报告值以95%置信区间计算。奥克代尔校区估计从可再生能源中产生5.5兆瓦的能源。根据化学需氧量分析处理火鸡废料产生的甲烷产能约为可再生能源目标的1%。但是,该系统仍在生产甲烷气体,该过程尚未完成,也未进行优化。通过改进定量措施确定甲烷生产率的基准,应继续确立该方法的实用性。

著录项

  • 作者

    Pudasaini, Anup.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Alternative Energy.;Energy.;Engineering Chemical.
  • 学位 M.S.
  • 年度 2010
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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