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Odorous gaseous emissions as influence by process condition for the forced aeration composting of pig slaughterhouse sludge

机译:猪屠宰场污泥强迫曝气堆肥过程中异味排放

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摘要

Compost sustainability requires a better control of its gaseous emissions responsible for several impacts including odours. Indeed, composting odours have stopped the operation of many platforms and prevented the installation of others. Accordingly, present technologies collecting and treating gases emitted from composting are not satisfactory and alternative solutions must be found. Thus, the aim of this paper was to study the influence of composting process conditions on gaseous emissions. Pig slaughterhouse sludge mixed with wood chips was composted under forced aeration in 300 L laboratory reactors. The process conditions studied were: aeration rate of 1.68, 4.03, 6.22, 9.80 and 13.44L/h/kg of wet sludge; incorporation ratio of 0.55, 0.83 and 1.1 (kg of wet wood chips/kg of wet sludge), and; bulking agent particles size of < 10, 10 < 20 and 20 < 30 mm. Out-going gases were sampled every 2 days and their composition was analysed using gas chromatography coupled with mass spectrometry (GC-MS). Fifty-nine compounds were identified and quantified. Dividing the cumulated mass production over 30 days of composting, by odour threshold, 9 compounds were identified as main potential odour contributors: hydrogen sulphide, trimethylamine, ammonia, 2-pentanone, 1-propanol-2-methyl, dimethyl sulphide, dimethyl disulphide, dimethyl trisulphide and acetophenone. Five gaseous compounds were correlated with both aeration rate and bulking agent to waste ratio: hydrogen sulphide, trimethylamine, ammonia, 2-pentanone and 1-propanol-2-methyl. However, dropping the aeration rate and increasing the bulking agent to waste ratio reduced gaseous odour emissions by a factor of 5-10, when the required threshold dilution factor ranged from 10~5 to 10~6, to avoid nuisance at peak emission rates. Process influence on emissions of dimethyl sulphide, dimethyl disulphide, dimethyl trisulphide were poorly correlated with both aeration rate and bulking agent to waste ratio as a reaction with hydrogen sulphide was suspected. Acetophenone emissions originated from the wood chips. Olfactory measurements need to be correlated to gaseous emissions for a more accurate odour emission evaluation.
机译:堆肥的可持续性要求更好地控制其气体排放,从而产生包括臭味在内的多种影响。的确,堆肥气味已经停止了许多平台的运行,并阻止了其他平台的安装。因此,目前收集和处理堆肥产生的气体的技术并不令人满意,必须找到替代解决方案。因此,本文的目的是研究堆肥工艺条件对气体排放的影响。在300升实验室反应器中,在强制通风下将混合有木屑的猪屠宰场污泥堆肥。研究的工艺条件为:曝气速率为1.68、4.03、6.22、9.80和13.44L / h / kg湿污泥;掺入比为0.55、0.83和1.1(千克湿木屑/千克湿污泥);以及填充剂的粒径为<10、10 <20和20 <30 mm。每两天对流出的气体进行一次采样,并使用气相色谱-质谱联用仪(GC-MS)分析其成分。鉴定并定量了59种化合物。将堆肥30天的累积批量生产除以气味阈值,可以确定9种主要的潜在气味来源:硫化氢,三甲胺,氨,2-戊酮,1-丙醇-2-甲基,二甲基硫,二甲基二硫,二甲基三硫化物和苯乙酮。五个气态化合物与曝气速率和填充剂与废物的比率都相关:硫化氢,三甲胺,氨,2-戊酮和1-丙醇-2-甲基。但是,当所需的阈值稀释系数在10〜5到10〜6范围内时,降低曝气速率和增加填充剂与废物的比例会使气态气味的排放降低5-10倍,以避免在峰值排放速率下造成麻烦。工艺过程对二甲基硫,二硫化二甲基,三​​硫化二甲基的排放的影响与通气速率和填充剂与废料的比率均不很相关,因为怀疑与硫化氢发生了反应。苯乙酮的排放源于木片。嗅觉测量需要与气体排放相关联,以进行更准确的气味排放评估。

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  • 来源
    《Waste Management 》 |2014年第7期| 1125-1138| 共14页
  • 作者单位

    Irstea, UR GERE, 17 Avenue de Cucille, CS 64427, F-35044 Rennes, France;

    Irstea, UR GERE, 17 Avenue de Cucille, CS 64427, F-35044 Rennes, France;

    Irstea, UR GERE, 17 Avenue de Cucille, CS 64427, F-35044 Rennes, France;

    Irstea, UR GERE, 17 Avenue de Cucille, CS 64427, F-35044 Rennes, France;

    Laboratoire Sciences Chimiques de Rennes - equipe Chimie et Ingenierie des Procedes, UMR 6226 CNRS, ENSCR, Avenue du General Leclerc, 35700 Rennes, France;

    Laboratoire Sciences Chimiques de Rennes - equipe Chimie et Ingenierie des Procedes, UMR 6226 CNRS, ENSCR, Avenue du General Leclerc, 35700 Rennes, France;

    Irstea, UR GERE, 17 Avenue de Cucille, CS 64427, F-35044 Rennes, France,Concordia University, Department of Building, Civil and Environmental Engineering, 1455 de Maisonneuve, Montreal, QC H3G 1M8, Canada;

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

    Composting; Caseous emissions; Odour; Pig slaughter house sludge; Forced aeration;

    机译:堆肥;干酪排放;气味;猪屠宰场污泥;强制通风;

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