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Biodrying process: A sustainable technology for treatment of municipal solid waste with high moisture content

机译:生物干燥工艺:一种用于处理含水量高的城市固体废物的可持续技术

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摘要

Municipal solid waste with high moisture content is the major hindrance in the field of waste to energy conversion technologies and here comes the importance of biodrying process. Biodrying is a convective evaporation process, which utilizes the biological heat developed from the aerobic reactions of organic components. The numerous end use possibilities of the output are making the biodrying process versatile, which is possible by achieving the required moisture reduction, volume reduction and bulk density enhancement through the effective utilization of biological heat. In the present case study the detailed research and development of an innovative biodrying reactor has been carried out for the treatment of mixed municipal solid waste with high moisture content. A pilot scale biodrying reactor of capacity 565 cm3 was designed and set up in the laboratory. The reactor dimensions consisted of an acrylic chamber of 60 cm diameter and 200 cm height, and it was enveloped by an insulation chamber. The insulation chamber was provided to minimise the heat losses through the side walls of the reactor. It simulates the actual condition in scaling up of the reactor, since in bigger scale reactors the heat losses through side walls will be negligible while comparing the volume to surface area ratio. The mixed municipal solid waste with initial moisture content of 61.25% was synthetically prepared in the laboratory and the reactor was fed with 109 kg of this substrate. Aerobic conditions were ensured inside the reactor chamber by providing the air at a constant rate of 40 litre per minute, and the direction of air flow was from the specially designed bottom air chamber to the reactor matrix top. The self heating inside reactor matrix was assumed in the range of 50-60 ℃ during the design stage. Innovative biodrying reactor was found to be efficiently working with the temperature inside the reactor matrix rising to a peak value of 59 ℃ by the fourth day of experiment (the peak observed at a height of 60 cm from the air supply). The process analyses results were promising with a reduction of 56.5% of volume, and an increase of 52% of bulk density of the substrate at the end of 33 days of biodrying. Also the weight of mixed MSW substrate has been reduced by 33.94% in 20 days of reaction and the average moisture reduction of the matrix was 20.81% (reduced from the initial value of 61.25% to final value of 48.5%). The moisture reduction would have been higher, if the condensation of evaporated water at the reactor matrix has been avoided. The non-homogeneous moisture reduction along the height of the reactor is evident and this needs further innovation. The leachate production has been completely eliminated in the innovative biodrying reactor and that is a major achievement in the field of municipal solid waste management technology.
机译:高含水量的城市固体废物是废物向能量转换技术领域的主要障碍,生物干燥过程的重要性就此而来。生物干燥是对流蒸发过程,它利用了有机成分的需氧反应产生的生物热。输出的多种最终用途可能性使生物干燥过程变得通用,这可以通过有效利用生物热量实现所需的水分减少,体积减少和体积密度增加而实现。在本案例研究中,已经对创新的生物干燥反应器进行了详细的研究和开发,以处理高水分含量的混合城市固体废物。在实验室中设计并设置了一个容量为565 cm3的中试规模的生物干燥反应器。反应器尺寸由直径为60厘米,高度为200厘米的丙烯酸室组成,并被一个绝缘室包围。提供隔热室以使通过反应器侧壁的热损失最小化。它模拟了按比例放大反应堆的实际条件,因为在比较大型反应堆中,通过比较侧壁的体积与表面积之比,通过侧壁的热量损失可以忽略不计。在实验室中合成制备了初始水分含量为61.25%的混合城市固体废物,并向反应器中加入了109千克这种底物。通过以每分钟40升的恒定速率提供空气,确保了反应器室内的有氧条件,并且空气的流动方向是从专门设计的底部空气室到反应器基质顶部。在设计阶段,假设反应堆内部的自热在50-60℃的范围内。实验的第四天,发现创新的生物干燥反应器可以有效地使反应器基质内部的温度升高到59℃的峰值(在距进气口60 cm处观察到的峰值)。过程分析的结果令人鼓舞,在生物干燥的33天结束时,其体积减少了56.5%,基板的堆积密度增加了52%。同样,在20天的反应中,混合MSW基质的重量减少了33.94%,基质的平均水分减少量为20.81%(从初始值61.25%降低到最终值48.5%)。如果避免了蒸发水在反应器基体上的冷凝,则水分减少量会更高。沿反应器高度的非均匀水分减少是显而易见的,这需要进一步的创新。创新的生物干燥反应器完全消除了渗滤液的生产,这是市政固体废物管理技术领域的一项重大成就。

著录项

  • 来源
    《Waste Management》 |2016年第3期|64-72|共9页
  • 作者单位

    School of Engineering, Cochin University of Science and Technology, Kochi 682022, Kerala, India;

    Civil Engineering Department, School of Engineering, Cochin University of Science and Technology, Kochi 682022, Kerala, India;

    Process Engineering & Environmental Technology, National Institute of Interdisciplinary Science and Technology. Thiruvananthapuram 695018, Kerala, India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodrying; Temperature; Mixed municipal solid waste; Biodegradation;

    机译:生物干燥;温度;混合的城市固体废物;生物降解;

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