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Anaerobic digestion of solid slaughterhouse waste: study of biological stabilization by Fourier Transform infrared spectroscopy and thermogravimetry combined with mass spectrometry

机译:固体屠宰场废水的厌氧消化:傅里叶变换红外光谱和热重分析与质谱联用对生物稳定化的研究

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In this paper, Fourier Transform infrared spectroscopy (FTIR) along with thermogravimetric analysis together with mass spectrometry (TG–MS analysis) were employed to study the organic matter transformation attained under anaerobic digestion of slaughterhouse waste and to establish the stability of the digestates obtained when compared with fresh wastes. Digestate samples studied were obtained from successful digestion and failed systems treating slaughterhouse waste and the organic fraction of municipal solid wastes. The FTIR spectra and TG profiles from well stabilized products (from successful digestion systems) showed an increase in the aromaticity degree and the reduction of volatile content and aliphatic structures as stabilization proceeded. On the other hand, the FTIR spectra of non-stable reactors showed a high aliphaticity degree and fat content. When comparing differential thermogravimetry (DTG) profiles of the feed and digestate samples obtained from all successful anaerobic systems, a reduction in the intensity of the low-temperature range (≈300°C) peak was observed, while the weight loss experienced at high-temperature (450–550°C) was variable for the different systems. Compared to the original waste, the intensity of the weight loss peak in the high-temperature range decreased in the reactors with higher hydraulic retention time (HRT) whereas its intensity increased and the peak was displaced to higher temperatures for the digesters with lower HRT.
机译:本文采用傅里叶变换红外光谱(FTIR)以及热重分析和质谱分析(TG-MS分析)来研究屠宰场废物厌氧消化后有机物的转化,并确定当消化时所获得的消化物的稳定性。与新鲜废物相比。从成功的消化系统和失败的系统处理屠宰场废物和市政固体废物的有机部分中获得的消化液样品。稳定化产品(来自成功的消化系统)的FTIR光谱和TG曲线显示,随着稳定化的进行,芳香度增加,挥发物含量和脂肪族结构减少。另一方面,不稳定反应器的FTIR光谱显示出高脂族度和脂肪含量。当比较从所有成功的厌氧系统获得的进料和消化样品的差示热重分析(DTG)曲线时,观察到低温范围(≈300°C)峰值的强度降低,而高温下的重量减轻不同系统的温度(450–550°C)不同。与原始废物相比,在具有较高水力停留时间(HRT)的反应堆中,高温范围内失重峰的强度降低,而对于具有较低HRT的消化池,其强度增加,并且该峰移至较高温度。

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