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Solar greenhouse assisted biogas plant in hilly region - A field study

机译:丘陵地区日光温室辅助沼气厂的实地研究

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摘要

The present study was undertaken with the objective of evaluating plastic as an alternative material for biogas plant on a par with conventional brick material. The field study was carried out for one year (October, 2005-September, 2006) in a small hamlet at Nilgiris incorporating solar energy to study its influence on biogas production. During summer (April-June) the temperature reaches to the maximum of 21-25 ℃ and the minimum of 10-12 ℃. During winter (October-December), the temperature available is maximum of 16-21 ℃ and minimum of 2 ℃. The solar insolation in the study area ranges from 250 to 600 W/m~2. This study involves the control conventional Deenabandhu model (Indian standard model prevailing in most part of India made of masonry structure only) and the experimental plastic tank with greenhouse canopy of similar capacity. Our previous work [Vinoth Kumar, K., Kasturi Bai, R., 2005. Plastic biodigesters - a systematic study. Energy for Sustainable Development 9 (4), 40-49] on lab scale digester made from plastic material was compared over other materials and the results gave us much confidence to carry out further study on pilot scale. In continuation, a semi-continuous study was conducted for one year with the retention time of 55 days. The gas generated from the biogas plants was utilized for cooking (burner) and lighting (lamp) purposes. The yearly average slurry temperatures recorded during the study period was 26.3 and 22.4 ℃ in experimental and control biogas plants against ambient temperature of 17.0 ℃. The yearly average greenhouse chamber temperature recorded was 29.1 ℃ in the experimental biogas plant. The yearly average gas yield from the experimental and control biogas plants were 39.1 and 34.6 1 kg~(-1) day~(-1) respectively. Gas productions in the winter season registered lower than other months. It can be concluded that the solar greenhouse assisted plastic biogas plant can be efficiently adopted with minor modifications in hilly regions since the temperature profile plays a major role in biogas production.
机译:进行本研究的目的是评估塑料作为沼气厂的替代材料,与传统砖材料相当。在Nilgiris的一个小村庄进行了为期一年的现场研究(2005年10月至2006年9月),该村庄结合了太阳能来研究其对沼气生产的影响。在夏季(4月至6月),温度最高为21-25℃,最低为10-12℃。在冬季(10月至12月),可用温度最高为16-21℃,最低为2℃。研究区域的日照范围为250至600 W / m〜2。这项研究涉及传统的对照Deenabandhu模型(印度大部分地区仅由砖石结构制成的印度标准模型)和具有类似容量温室盖的实验塑料罐。我们以前的工作[Vinoth Kumar,K.,Kasturi Bai,R.,2005。塑料生物消化物-系统研究。对比了由塑料制成的实验室规模的沼气池与其他材料的可持续发展能源[9(4),40-49],结果使我们有很大的信心开展进一步的中试规模研究。连续进行了为期一年的半连续研究,保留时间为55天。从沼气厂产生的气体用于烹饪(燃烧器)和照明(灯)。在实验期间和对照沼气厂中,在环境温度为17.0℃的情况下,研究期间记录的年平均泥浆温度为26.3和22.4℃。实验性沼气厂的年平均温室温度为29.1℃。实验和对照沼气厂的年平均产气量分别为39.1和34.6 1 kg〜(-1)day〜(-1)。冬季的天然气产量低于其他月份。可以得出结论,由于温度分布在沼气生产中起着重要作用,因此在丘陵地区只需稍作改动就可以有效地采用日光温室辅助塑料沼气厂。

著录项

  • 来源
    《Solar Energy》 |2008年第10期|p.911-917|共7页
  • 作者单位

    Department of Bio-Energy, School of Energy, Environment and Natural Resources, Madurai Kamaraj University, Madurai 625 021, Tamil Nadu, India;

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

    solar; greenhouse; biogas plant; temperature;

    机译:太阳能;温室;沼气厂;温度;

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