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Improvement of Biogas Production from Animal Manure via Bacteria Enrichment using CASCADE Technology

机译:通过使用级联技术通过细菌富集从动物粪肥生产的改善

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A machine learning system - Computer Assisted Strain Construction and Development Engineering, or CASCADE for short, was applied to identifying microorganisms and finding correlations based on predictive patterns between the organisms' genetic information and their metabolic behavior for selecting baterial strains of more effective phenotypcs. Further demonstrated was a bioaugmentation method showing improvement of anaerobic digestion of cow manure for biogas production by adding bacteria selected usiing the CASCADE algorithm. The experiments showed that when compared to the traditional anaerobic digestion, biogas production of the groups with addition of selected bacterial strains increased by 50.3% and 36.2% respectively while the methane contents of biogas were nearly equal to the control. DGGE analysis showed addition of selected bacteria caused the difference Of dominant bateria during the digestion process which was useful to the anaerobic digestion. The results showed that adding bacteria selected by CASCADE in the anaerobic digestion process is an effective way to increase biogas production from cow manure.
机译:一种机器学习系统 - 计算机辅助应变施工和开发工程,或短暂的级联,应用于鉴定微生物和基于生物体遗传信息的预测模式和它们代谢行为的相关性,用于选择更有效的比例的分水管株。进一步证明的是通过添加采用级联算法的细菌来改善沼气生产的牛粪的改善方法的生物沉积方法。该实验表明,与传统的厌氧消化相比,沼气生产的沼气产量分别增加了50.3%和36.2%,而沼气的甲烷含量几乎等于对照。 DGGE分析显示出选定的细菌的添加导致在消化过程中显性障碍的差异,这对厌氧消化有用。结果表明,在厌氧消化过程中,通过级联选择的细菌是增加牛粪产生沼气的有效方法。

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