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An evaluation of stability by thermogravimetric analysis of digestate obtained from different biowastes

机译:通过热重分析从不同生物废物中获得的消化物来评估稳定性

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Research was carried out with the aim of monitoring anaerobic digestion processes using thermal analysis with the aid of mass spectrometry so as to define the stability of the digestate obtained. Three different systems were investigated under varying conditions. The digestion of waste sludge from a pharmaceutical industry (PI) and the digestion of cattle manure (CM) were evaluated under mesophilic conditions. The co-digestion of a mixture of primary sludge (PS) and the organic fraction of municipal solid wastes (OFMSW) was studied under thermophilic conditions. Temperature-programmed combustion tests were carried out to investigate the degree of stabilization of samples throughout the digestion processes. The derivative thermogravimetry (DTG) profiles obtained for the mesophilic digestion of PI waste showed a decrease at low temperatures and an increase at high temperatures in the intensity of the peaks recorded as the stabilization process proceeded. These results are in accordance with those obtained by the present authors in their previous work on the mesophilic digestion of primary sludge and OFMSW. In contrast, the DTG profiles obtained from the stabilization process of CM and thermophilic codigestion of PS and OFMSW showed a reduction in peaks at high temperatures. When the stabilization products obtained from CM by anaerobic digestion and by composting processes were compared, it was observed that the composting process was capable of further decomposing materials readily oxidized at low temperatures and increasing the presence of structurally more complex substances. The evolution of the differential thermal analysis (DTA) signal recorded simultaneously showed considerable similarity to the mass/charge "(m/z) signal 44 registered by the mass spectrometer. The use of mass spectrometry helped to clarify the inner workings of the digestion process.
机译:进行研究的目的是借助质谱分析通过热分析监测厌氧消化过程,从而确定所得消化物的稳定性。在不同条件下研究了三种不同的系统。在中温条件下评估了制药业(PI)的废渣消化和牛粪(CM)的消化。在高温条件下研究了主要污泥(PS)和城市固体废物有机部分(OFMSW)混合物的共消化。进行了程序升温燃烧试验,以研究整个消化过程中样品的稳定程度。随着稳定过程的进行,所获得的用于PI废物的中温消化的导数热重分析(DTG)曲线在低温下呈下降趋势,在高温下呈上升趋势。这些结果与本作者先前在原污泥和OFMSW的中温消化中的研究结果一致。相反,从CM的稳定过程以及PS和OFMSW的高温共消化获得的DTG曲线显示,高温下峰的减少。当比较通过厌氧消化和堆肥过程从CM获得的稳定化产物时,观察到堆肥过程能够进一步分解在低温下容易氧化的物质,并增加结构上更复杂的物质的存在。同时记录的差示热分析(DTA)信号的演变过程与质谱仪记录的质量/电荷“(m / z)信号44”非常相似。质谱的使用有助于阐明消化过程的内部工作原理。

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