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An evaluation of the fermentation efficiency of selected substrates from the agri-food sector on a physical, chemical and biological basis

机译:在物理,化学和生物学基础上评估农业食品领域精选底物的发酵效率

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Methane fermentation has been a waste management technique for years. The main advantages of fermentation include the production of electricity and heat from biogas or biomethane, which are a source of renewable energy. In order for the fermentation process to have good economic indicators, the continuous monitoring of process parameters is necessary. To control the fermentation process, an anaerobic test determining the biochemical methane potential (BMP) is particularly recommended. The disadvantage of this test is the long duration of measurements. Nowadays, AT4 respiration tests are increasingly used to assess the methane potential of waste. The main advantages of AT4 include: the 4-day duration of the test, the simple method for implementation and the possibility of applying the test to all types of waste. In practice, in most cases physical (VS) and chemical indicators (TOC and COD) are used to assess the suitability of substrates for fermentation and its effectiveness. However, these indicators specify only the total content of organic matter, yet do not give information on the fraction of biodegradable matter. The article presents an assessment of the efficiency of fermentation substrates selected from the agri-food sector on a physical, chemical and biological basis and presents the correlation between these indicators.
机译:甲烷发酵多年来一直是废物管理技术。发酵的主要优势包括利用沼气或沼气生产电力和热能,而沼气或沼气是可再生能源。为了使发酵过程具有良好的经济指标,必须连续监控过程参数。为了控制发酵过程,特别推荐确定生化甲烷潜力(BMP)的厌氧测试。该测试的缺点是测量时间长。如今,AT4呼吸测试越来越多地用于评估废物的甲烷潜力。 AT4的主要优点包括:测试持续4天,实施的简单方法以及将测试应用于所有类型的废物的可能性。实际上,在大多数情况下,使用物理(VS)和化学指示剂(TOC和COD)来评估发酵底物的适用性及其有效性。但是,这些指标仅指定了有机物质的总含量,而没有提供有关可生物降解物质比例的信息。本文从物理,化学和生物学的角度对选自农业食品领域的发酵底物的效率进行了评估,并提出了这些指标之间的相关性。

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