Influence of Biogas Digestates on the Composition of Soil Organic Matter

Q4 Energy
G. Jandl, R. Horn, Richard Schroeder, K. Eckhardt, P. Leinweber
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Abstract

The increasing number of biogas plants with various digested organic materials and output of digestates calls for more detailed investigations of their suitability as soil amendments. In a trial in Northern Germany two replicate plots each were treated with fresh or prolonged fermented digestate to investigate the influence of digestates on the composition of soil organic matter (SOM). The relative proportions of relevant SOM compound classes were determined by pyrolysis-field ionization mass spectrometry (Py-FIMS) and pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS). Using these two methods the influence of digestate on the SOM composition was illustrated by the statistical spectra evaluation by principal component analysis. In both digestate-treated plots, the relative proportions of the slowly degradable alkylaromatic compounds and lipids were larger. In contrast, easily degradable carbohydrates and amides and mostly heterocyclic N-compounds were less than in the control plots. However, these SOM differences due to digestates were less pronounced than differences in the composition of autochthonous SOM in the control plots. In one of the treatments N- and alkylaromatic compounds were more abundant in the aggregate core than on the aggregate surface. In contrast, aliphatic compounds were more abundant on the aggregate surface as disclosed by Py-FI and pyrolysis-gas chromatography-mass spectra (Py-GC/MS). In conclusion, increasing amounts of digestate should be critically monitored according to different digestate feedstock, soil types, ecological factors and crop growth/yield.
沼气池对土壤有机质组成的影响
越来越多的沼气工厂消化了各种有机物质和产出的排泄物,要求对它们作为土壤改良剂的适用性进行更详细的调查。在德国北部的一项试验中,在两个重复地块上分别施用新鲜或长时间发酵的消化液,以研究消化液对土壤有机质组成的影响。采用热解场电离质谱法(Py-FIMS)和热解气相色谱/质谱法(Py-GC/MS)测定相关SOM化合物类别的相对比例。用主成分分析的统计光谱评价方法说明了消化液对SOM组成的影响。在两个消化不良处理的地块中,缓慢降解的烷基烃化合物和脂类的相对比例都较大。易降解的碳水化合物、酰胺类化合物和大部分杂环n -化合物较少。然而,在对照区,由于消化引起的SOM差异不如本地SOM组成的差异明显。在其中一种处理中,N-和烷基芳基化合物在骨料核心的含量高于骨料表面。Py-FI和热解-气相色谱-质谱(Py-GC/MS)显示,聚集体表面的脂肪族化合物更为丰富。综上所述,应根据不同的消化物原料、土壤类型、生态因子和作物生长/产量,严格监测消化物用量的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Nuclear Energy Science and Power Generation Technology
Journal of Nuclear Energy Science and Power Generation Technology Energy-Energy Engineering and Power Technology
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