Centro de Edafología y Biología Aplicada del Segura (CEBAS-CSIC), Campus Universitario de Espinardo, Espinardo, Murcia, Spain.
Waste Manag Res. 2013 Aug;31(8):805-10. doi: 10.1177/0734242X13497078. Epub 2013 Jul 5.
More than 300,000 tonnes of brewer's spent grain (BSG) is generated annually during beer production. This protein- and nutrient-rich by-product is mostly employed as an animal feedstuff. However, its marketability is compromised by its rapid deterioration owing to its high humidity and fermentable sugar content. Drying BSG can be achieved using the bio-energy generated from the anaerobic digestion of part of the BSG produced in the same brewery. We employed three types of strategies to enhance the biomethanation of BSG in mesophilic batch incubations. First, we co-digested BSG with peach flesh residues, juice residues, sewage sludge and pig slurry. Second, we supplemented BSG with chemical additives (carbon and energy sources) in order to biostimulate the methane-producing microbial communities. Finally, we used anaerobically acclimatised BSG to augment the initial microbial load in assays digesting BSG either alone or in co-digestion with sewage sludge. All co-substrates assayed were suitable to be fermented in combination with BSG, although methane production was highest for the mixtures with sewage sludge and pig slurry, with their high pH values and nutrient contents. Nine out of 14 combinations of stimulatory chemicals significantly enhanced BSG methanation compared with a non-supplemented control. Overall, bioaugmenting the anaerobic microbial consortia by using fermented BSG as an inoculum when co-digesting BSG with sewage sludge performed best in terms of methane yield.
每年在啤酒生产过程中会产生超过 30 万吨的啤酒糟(BSG)。这种富含蛋白质和营养的副产品主要用作动物饲料。然而,由于其高湿度和可发酵糖含量,其市场性受到了快速恶化的影响。可以使用来自同一啤酒厂生产的部分 BSG 的厌氧消化产生的生物能源来干燥 BSG。我们采用了三种策略来增强中温批式培养中 BSG 的生物甲烷化。首先,我们将 BSG 与桃肉残渣、果汁残渣、污水污泥和猪粪混合消化。其次,我们向 BSG 添加了化学添加剂(碳和能源源),以生物刺激产甲烷微生物群落。最后,我们使用厌氧驯化的 BSG 来增加单独消化或与污水污泥共消化时的初始微生物负荷。所有测试的共底物都适合与 BSG 发酵,尽管与污水污泥和猪粪混合的混合物的甲烷产量最高,因为它们的 pH 值和营养含量较高。与未添加对照相比,14 种刺激性化学物质中有 9 种显著增强了 BSG 的甲烷化。总体而言,当与污水污泥共消化时,使用发酵的 BSG 作为接种物来生物增强厌氧微生物群落,在甲烷产量方面表现最佳。