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首页> 外文期刊>Waste management & research >Effect of aeration rate, moisture content and composting period on availability of copper and lead during pig manure composting
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Effect of aeration rate, moisture content and composting period on availability of copper and lead during pig manure composting

机译:猪粪堆肥过程中曝气速率,含水量和堆肥时间对铜和铅有效性的影响

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摘要

Pollution by heavy metals, such as copper and lead, has become a limiting factor for the land application of faecal manures, such as pig manure. This study was conducted to investigate the influence of composting process parameters, including aeration rate, moisture content and composting period, on the distribution of heavy metal species during composting, and to select an optimal parameter for copper and lead inactivation. Results showed that the distribution ratios of exchangeable fractions of copper and lead had a bigger decrease under conditions of aeration rate, 0.1m~3 min~(-1) m~(-3), an initial moisture content of 65% and composting period of 50 days. Suboptimal composting process conditions could lead to increased availability of heavy metals. Statistical analysis indicated that the aeration rate was the main factor affecting copper and lead inactivation, while the effects of moisture content and composting period were not significant. The rates of reduction of copper-exchangeable fractions and lead-exchangeable fractions were positively correlated with increased pH. The optimal parameters for reducing heavy metal bioavailability during pig manure composting were aeration rate, 0.1 m~3 min~(-1) m~(-3), initial moisture content, 65%, and composting period, 20 days.
机译:重金属(例如铜和铅)的污染已成为粪便肥料(如猪粪)在土地上应用的限制因素。本研究旨在研究堆肥工艺参数(包括曝气速率,含水量和堆肥时间)对堆肥过程中重金属种类分布的影响,并为铜和铅的失活选择最佳参数。结果表明,在曝气速率为0.1m〜3 min〜(-1)m〜(-3),初始含水量为65%,堆肥期的条件下,铜,铅交换分数的分布比例下降幅度较大。 50天。堆肥工艺条件欠佳可能导致重金属的利用率增加。统计分析表明,曝气速率是影响铜和铅失活的主要因素,而水分含量和堆肥时间的影响并不显着。铜可交换馏分和铅可交换馏分的减少速率与pH值呈正相关。降低猪粪堆肥过程中重金属生物利用度的最佳参数是通气率0.1 m〜3 min〜(-1)m〜(-3),初始含水量65%和堆肥期20天。

著录项

  • 来源
    《Waste management & research》 |2016年第6期|578-583|共6页
  • 作者单位

    Chinese Academy of Agricultural Engineering, Beijing, China ,China Key Laboratory of Energy Resource Utilization From Agriculture Residue, Ministry of Agriculture, Beijing, China;

    Chinese Academy of Agricultural Engineering, Beijing, China ,China Key Laboratory of Energy Resource Utilization From Agriculture Residue, Ministry of Agriculture, Beijing, China;

    Chinese Academy of Agricultural Engineering, 41 Maizidian Street, Chaoyang District, Beijing 100125, China ,China Key Laboratory of Energy Resource Utilization From Agriculture Residue, Ministry of Agriculture, Beijing, China;

    Chinese Academy of Agricultural Engineering, Beijing, China ,China Key Laboratory of Energy Resource Utilization From Agriculture Residue, Ministry of Agriculture, Beijing, China;

    Chinese Academy of Agricultural Engineering, Beijing, China ,China Key Laboratory of Energy Resource Utilization From Agriculture Residue, Ministry of Agriculture, Beijing, China;

    Rural Energy & Environment Agency, Ministry of Agriculture, Beijing, China;

    Chinese Academy of Agricultural Engineering, Beijing, China ,China Key Laboratory of Energy Resource Utilization From Agriculture Residue, Ministry of Agriculture, Beijing, China;

    China Key Laboratory of Non-point Source Pollution Control, Ministry of Agriculture, Beijing, China;

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

    Composting; heavy metal; aeration rate; moisture content; composting period; copper; lead;

    机译:堆肥;重金属;曝气率水分含量;堆肥期;铜;铅;

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