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Effects of the aeration pattern, aeration rate, and turning frequency on municipal solid waste biodrying performance

机译:曝气方式,曝气速率和转向频率对城市固体废物生物干燥性能的影响

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摘要

Interactive influences of the aeration pattern, aeration rate, and turning frequency on municipal solid waste biodrying performance were investigated. Energy and water mass balances were used to identify the main water-removal routes and determine the amount of energy used and efficiency. Changing the aeration pattern and turning frequency did not significantly affect biodrying performance when the other conditions and total aeration volume were constant. The total aeration volume controlled the pile temperature and evaporation, making it the main factor affecting water loss during biodrying. A continuous aeration rate of 0.5 L kg−1dry matter·min−1gave the best biodrying performance (the highest water-removal rate, biodrying index, and sorting efficiency, 0.5 kg kg−1, 4.12, and 86.87%, respectively, and the highest lower heat value (LHV) and heat utilization rate, 9440 kJ kg−1and 68.3%, respectively). There was an optimum aeration rate, water loss reaching a maximum at an aeration rate of 0.5 L kg−1DM·min−1and not increasing further as the aeration rate increased further. Lower aeration rates gave higher volatile solid degradation rates. The effects of turning could be achieved by increasing the aeration rate. The recommended biodrying parameters are continuous aeration at an aeration rate of 0.5 L kg−1dry matter min−1and one turn every 3 d.
机译:研究了曝气方式,曝气速率和转向频率对城市固体废物生物干燥性能的交互影响。能源和水的质量平衡被用来确定主要的除水路线,并确定能源消耗量和效率。当其他条件和总曝气量不变时,改变曝气模式和转向频率不会显着影响生物干燥性能。总曝气量控制着堆的温度和蒸发量,使其成为影响生物干燥过程中水分流失的主要因素。 0.5 L kg-1干物质·min-1的连续曝气速率具有最佳的生物干燥性能(最高脱水率,生物干燥指数和分选效率分别为0.5 kg kg-1、4.12和86.87%,并且最高低发热量(LHV)和热利用率分别为9440 kJ kg-1和68.3%。有一个最佳的曝气速率,在0.5 L kg-1DM·min-1的曝气速率下,失水量达到最大值,并且随着曝气速率的进一步增加,失水量没有进一步增加。较低的曝气速率会导致较高的挥发性固体降解速率。转向的效果可以通过增加通气率来实现。推荐的生物干燥参数是以0.5 L kg-1干物质min-1的曝气速率连续曝气,每3 d转一圈。

著录项

  • 来源
    《Journal of Environmental Management》 |2018年第15期|416-424|共9页
  • 作者单位

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Science, China Agricultural University;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Science, China Agricultural University;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Science, China Agricultural University;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Science, China Agricultural University;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Science, China Agricultural University;

    Beijing Building Materials Academy of Science Research/State Key Laboratory of Solid Waste Reuse for Building Material;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Science, China Agricultural University;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Science, China Agricultural University;

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

    Biodrying; Municipal solid waste; Aeration volume; Turning frequency; Water evaporation; Energy use;

    机译:生物干燥;城市固体废物;曝气量;转向频率;水蒸发;能源利用;

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