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Updraft Gasification of Salmon Processing Waste

机译:鲑鱼加工废料的上气化

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摘要

The purpose of this study was to Judge the feasibility of gasification for the disposal of waste streams generated through salmon harvesting. Gasification is the process of converting carbonaceous materials into combustible "syngas" in a high temperature (above 700 ℃), oxygen deficient environment. Syngas can be combusted to generate power, which recycles energy from waste products. At 66% to 79% moisture, raw salmon waste streams are too wet to undergo pyrolysis and combustion. Ground raw or de-oiled salmon whole fish, heads, viscera, or frames were therefore "dried" by mixing with wood pellets to a final moisture content of 20%. Ground whole salmon with moisture reduced to 12% moisture was gasified without a drying agent. Gasification tests were performed in a small-scale, fixed-bed, updraft gasifer. After an initial start-up period, the gasifier was loaded with 1.5 kg of biomass. Temperature was recorded at 6 points in the gasifier. Syngas was collected during the short steady-state period during each gasifier run and analyzed. Percentages of each type of gas in the syngas were used to calculate syngas heating value. High heating value (HHV) ranged from 1.45 to 1.98 MJ/kg. Bomb calorimetry determined maximum heating value for the salmon by-products. Comparing heating values shows the efficiency of gasification. Cold gas efficiencies of 13.6% to 26% were obtained from the various samples gasified. Though research of gasification as a means of salmon waste disposal and energy production is ongoing, it can be concluded that pre-dried salmon or relatively low moisture content mixtures of waste with wood are gasifiable.
机译:这项研究的目的是判断气化处理鲑鱼收获产生的废物流的可行性。气化是在高温(700℃以上),缺氧环境中将碳质材料转化为可燃“合成气”的过程。合成气可以燃烧产生能量,从而从废物中回收能量。鲑鱼原料废水的水分含量为66%至79%,太湿了,无法进行热解和燃烧。因此,将磨碎的生鱼或去油三文鱼整条鱼,头,内脏或鱼骨与木丸混合,以“最终干燥” 20%的水分。在不使用干燥剂的情况下,将水分降至12%的碎鲑鱼气化。气化试验是在小型固定床上升气流式气化炉中进行的。在初始启动阶段之后,气化炉中装有1.5千克生物质。在气化炉中在6点记录温度。在每个气化炉运行期间的短稳态期间内收集合成气并进行分析。合成气中每种气体的百分比用于计算合成气热值。高发热量(HHV)为1.45至1.98 MJ / kg。炸弹量热法确定了鲑鱼副产物的最大热值。比较热值显示气化效率。从气化的各种样品中获得的冷气效率为13.6%至26%。尽管正在进行气化作为鲑鱼废物处置和能源生产的手段的研究,但可以得出结论,预干燥的鲑鱼或水分含量相对较低的废物与木材的混合物是可以气化的。

著录项

  • 来源
    《Journal of Food Science》 |2009年第8期|110-115|共6页
  • 作者单位

    Oklahoma State Univ., Dept. of Animal Science, 125 FAPC, Robert M. Kerr Food & Agricultural Products Center, Stillwater, OK 74078, U.S.A.;

    USDA Agricultural Research Service, P.O. Box 757200, Fairbanks, AK, 99775-7200, U.S.A.;

    Oklahoma State Univ., Dept. of Biosystems and Agricultural Engineering, Rm 117-A Agricultural Hall, Stillwater, OK 74078, U.S.A.;

    Oklahoma State Univ., Dept. of Animal Science, 125 FAPC, Robert M. Kerr Food & Agricultural Products Center, Stillwater, OK 74078, U.S.A.;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biomass; calorimetry; salmon;

    机译:生物质量热法三文鱼;
  • 入库时间 2022-08-17 23:28:28

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