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In-storage psychrophilic anaerobic digestion of swine manure : acclimation of the microbial community

机译:储存猪粪中的嗜酸性厌氧消化:微生物群落的适应

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Covering a concrete manure storage tank with an air-tight floating membrane should induce anaerobic digestion of the stored manure. If the microbial community in the manure can acclimate to the ambient conditions, then In-Storage Psychrophilic Anaerobic Digestion (ISPAD) could be used by Canadian livestock producers to produce methane and stabilize manure. The objective of this study was to determine whether the microbial community in swine manure can successfully acclimate to the psychrophilic operating conditions in ISPAD and develop robust anaerobic digestion. This was done in the laboratory by analyzing manure from a three-year old full-scale pilot ISPAD facility located in St. Francois Xavier, Quebec, Canada, along with fresh manure and manure from an uncovered storage tank. Biochemical methane production assays performed at the three temperatures were used to quantify the performance of the microbial community and its temperature dependence. The ISPAD microbial community produced methane, in terms of VS added, at rates of 44.6, 9.8 and 8.5dm3kg-1d-1, at 35, 18 and 8\ub0C, respectively. The ISPAD process reduced the organic matter content of the manure by 24% while releasing 63% of the potential methane in the manure, as opposed to the open storage tank where no measurable reduction in solids occurred, and only 15% of the potential methane was released. These results indicate that a robust, acclimated microbial community actively digests manure in the pilot ISPAD installation.
机译:用不透气的浮膜覆盖混凝土粪便储罐,应引起粪便的厌氧消化。如果粪肥中的微生物群落能够适应环境条件,那么加拿大牲畜生产者可以使用贮藏式厌氧厌氧消化(ISPAD)生产甲烷并稳定粪肥。这项研究的目的是确定猪粪中的微生物群落是否能够成功适应ISPAD中的嗜酸性操作条件并发展出强大的厌氧消化能力。这是在实验室中通过分析位于加拿大魁北克省圣弗朗索瓦·泽维尔的,具有三年历史的全面试验性ISPAD设施中的粪便,以及新​​鲜粪便和未发现的储罐中的粪便来完成的。在这三个温度下进行的生化甲烷生产测定用于量化微生物群落的性能及其温度依赖性。 ISPAD微生物群落在35、18和8℃下分别以44.6、9.8和8.5dm3kg-1d-1的速度生成甲烷(以VS计)。 ISPAD工艺将粪便中的有机物含量减少了24%,同时释放了粪便中63%的潜在甲烷,这与露天储罐中没有发生可测量的固体减少,而只有15%的潜在甲烷已发布。这些结果表明,一个强大的,适应环境的微生物群落在ISPAD试验装置中积极地消化粪便。

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