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Effects of thermal pre-treatments on solid slaughterhouse waste methane potential

机译:热处理对固体屠宰场沼气潜力的影响

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摘要

The effects of thermal pre-treatments on the biogas production potential of two solid slaughterhouse waste types (poultry and piggery slaughterhouse by-products) were assessed by means of batch experiments. Both animal by-products were characterized in terms of fat, protein and carbohydrate concentrations. The selected thermal pre-treatments, pasteurization (70 °C for 60 min) and sterilization (133 °C and 3 bars for 20 min), are included in the current European regulations for the disposal or use of animal byproducts. The pre-treatments produced notable improvements in organic matter solubilization, but had different effects on the anaerobic bioavailability of the treated substrates. The methane yield of the initial volatile solids did not increase significantly after pre-treatment when carbohydrate concentration was high, reaching a maximum of 0.48 m_(ch4)~3 for the pasteurized poultry waste. However, this yield increased by up to 52.7% after pasteurization and 66.1 % after sterilization for the lower carbohydrate concentration sample (piggery waste), reaching maxima of 0.88 and 0.96 m_(ch4)~3, respectively. The maximum methane production rates, measured as the maximum slope of the accumulated methane production curve, per unit of initial biomass content, were also different. While this rate increased by 52.6% and 211.6% for piggery waste after pasteurization and sterilization, respectively, it decreased by 43.8% for poultry waste after pasteurization with respect to untreated waste. Compounds with low bio-degradability that are produced by Maillard reactions during thermal pre-treatment could explain the low bioavailability observed for waste with a high carbohydrate concentration.
机译:通过分批实验评估了热预处理对两种固体屠宰场废物(家禽和猪场的屠宰场副产品)沼气生产潜力的影响。两种动物副产品均以脂肪,蛋白质和碳水化合物的浓度为特征。所选的热预处理,巴氏灭菌(70°C持续60分钟)和灭菌(133°C和3 bar持续20分钟)已包含在当前有关处理或使用动物副产品的欧洲法规中。预处理在有机物增溶方面产生了显着改善,但对处理后的底物的厌氧生物利用度有不同的影响。碳水化合物浓度高时,预处理后初始挥发性固体的甲烷产率没有显着增加,对于巴氏消毒的家禽废物,其最大值达到0.48 m_(ch4)〜3。但是,对于较低碳水化合物浓度的样品(养猪废物),巴氏灭菌后该产量最多增加52.7%,灭菌后最多增加66.1%,分别达到最大值0.88和0.96 m_(ch4)〜3。每单位初始生物质含量的最大甲烷生产率(以累积甲烷产量曲线的最大斜率衡量)也有所不同。巴氏消毒和灭菌后的猪粪分别增加了52.6%和211.6%,而巴氏消毒后的家禽废物相对于未处理的废物则减少了43.8%。在热预处理期间通过美拉德反应产生的具有低生物降解性的化合物可以解释观察到的高碳水化合物浓度废物的低生物利用度。

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  • 来源
    《Waste Management》 |2011年第7期|p.1488-1493|共6页
  • 作者单位

    GIRO Technological Centre, Rbla. Pompeu Fabra I, E-08100 Mollet del Valles, Barcelona, Spain;

    GIRO Technological Centre, Rbla. Pompeu Fabra I, E-08100 Mollet del Valles, Barcelona, Spain;

    GIRO Technological Centre, Rbla. Pompeu Fabra I, E-08100 Mollet del Valles, Barcelona, Spain;

    GIRO Technological Centre, Rbla. Pompeu Fabra I, E-08100 Mollet del Valles, Barcelona, Spain,Department ofAgrifood Engineering and Biotechnology, Universitat Politecnica de Catalunya, Pare Mediterrani de la Tecnologia, Edifici D-4, E-08860 Castelldefels, Barcelona, Spain;

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