Suppr超能文献

产甲烷菌在高固体食物垃圾和纸板的甲烷生成过程中起着主要作用。

Methanosarcina plays a main role during methanogenesis of high-solids food waste and cardboard.

机构信息

LBE, Univ Montpellier, INRA, 102 avenue des Etangs, 11100 Narbonne, France; Suez, CIRSEE, 38 rue du Président Wilson, 78230 Le Pecq, France.

LBE, Univ Montpellier, INRA, 102 avenue des Etangs, 11100 Narbonne, France.

出版信息

Waste Manag. 2018 Jun;76:423-430. doi: 10.1016/j.wasman.2018.04.004. Epub 2018 Apr 7.

Abstract

Anaerobic digestion of food waste is a complex process often hindered by high concentrations of volatile fatty acids and ammonia. Methanogenic archaea are more sensitive to these inhibitors than bacteria and thus the structure of their community is critical to avoid reactor acidification. In this study, the performances of three different inocula were compared using batch digestion tests of food waste and cardboard mixtures. Particular attention was paid to the archaeal communities in the inocula and after digestion. While the tests started with inocula rich in Methanosarcina led to efficient methane production, VFAs accumulated in the reactors where inocula initially were poor in this archaea and no methane was produced. In addition, higher substrate loads were tolerated when greater proportions of Methanosarcina were initially present in the inoculum. Independently of the inoculum origin, Methanosarcina were the dominant methanogens in the digestates from the experiments that efficiently produced methane. These results suggest that the initial archaeal composition of the inoculum is crucial during reactor start-up to achieve stable anaerobic digestion at high concentrations of ammonia and organic acids.

摘要

食物垃圾的厌氧消化是一个复杂的过程,经常受到高浓度挥发性脂肪酸和氨的阻碍。产甲烷古菌比细菌对这些抑制剂更敏感,因此它们的群落结构对于避免反应器酸化至关重要。在这项研究中,使用食物垃圾和纸板混合物的分批消化试验比较了三种不同接种物的性能。特别关注接种物和消化后的古菌群落。虽然以富含产甲烷菌的接种物开始的试验导致了高效的甲烷生产,但在接种物中最初缺乏这种古菌的反应器中,VFAs 积累,并且没有产生甲烷。此外,当接种物中最初存在更多的产甲烷菌时,可以耐受更高的基质负荷。无论接种物的来源如何,在有效地产生甲烷的实验中,产甲烷菌都是消化物中的主要产甲烷菌。这些结果表明,在反应器启动期间,接种物的初始古菌组成对于在高浓度氨和有机酸下实现稳定的厌氧消化至关重要。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验