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A novel process design for enhanced biogas production from poultry manure using a solar water heating system.

机译:一种新的工艺设计,用于使用太阳能热水系统增强家禽粪便生产沼气。

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摘要

This paper analysis the enhancement of biogas production from poultry manure using a small scale anaerobic digester assisted by a solar water heating system in a Palestinian poultry farm. The farm, located in Ramallah district, with a total area of 140 m2 and accommodating around 1800 birds every 50 days produces annually about 6.57 tons (18 kg/day). An anaerobic digester with a design volume of 0.5 m3 and a working capacity of a 0.3 m3 was fed by poultry manure (total solids: 20%, C:N ratio: 32:1) in a continuous mode. A solar water heating system circulated water within the digester to enhance the anaerobic digestion process. The daily biogas yield ranged from 80 to 300 L and the methane content of the biogas ranged between 46% and 66%. As substitute to natural gas, the biogas with heat generated of 777 MJ was directly used for on farm heating purposes during the study period. Digester monitoring during the winter period revealed that biogas production rate increased by 33% and the temperature increased by 50% by using solar system. The fresh anaerobically digested slurry showed a nutrient rich fertilizer (NPK ratio of 1:1.3:1.3). Solar drying tank enhanced the removal of fecal pathogens (F. streptococcus) up to 3 log10. The economic profitability is expected to increase, making the capital investment worthwhile to farmers as of free-cost feed.
机译:本文分析了一个小规模的厌氧消化池在太阳能供水系统的帮助下在一个巴勒斯坦家禽养殖场中提高了家禽粪便沼气的产量。该农场位于拉马拉区,总面积140平方米,每50天可容纳约1800只禽,每年生产约6.57吨(18公斤/天)。设计量为0.5 m3,工作能力为0.3 m3的厌氧消化池以连续模式通过家禽粪便(总固体含量:20%,C:N比:32:1)进料。太阳能热水系统在消化池内循环水以增强厌氧消化过程。每天的沼气产量在80至300 L之间,沼气中的甲烷含量在46%至66%之间。在研究期间,产生的热量为777 MJ的沼气可替代天然气,直接用于农场取暖。冬季的沼气池监测显示,利用太阳能系统,沼气生产率提高了33%,温度提高了50%。新鲜的经厌氧消化的泥浆显示出富含营养的肥料(NPK比为1:1.3:1.3)。太阳能干燥箱提高了粪便病原体(链球菌)的清除率,最高可达3 log10。预计经济盈利能力将提高,这将使农民获得免费饲料作为资本投资。

著录项

  • 作者

    Ali R.; Al-Saed Rashed;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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