Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Martí i Franquès 1, 08028 Barcelona, Spain; Water Research Institute, University of Barcelona, Martí i Franquès 1, 08028 Barcelona, Spain.
Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Martí i Franquès 1, 08028 Barcelona, Spain.
Sci Total Environ. 2022 Nov 25;849:157920. doi: 10.1016/j.scitotenv.2022.157920. Epub 2022 Aug 8.
The impact of food waste (FW) composition on co-fermentation performance was studied to elucidate if adjusting FW composition can be used to drive the fermentation yield and profile, which is relevant for biorefinery applications. First, the impact of individual FW components (i.e., fruit, vegetables, pasta, rice, meat, fish, and cellulose) was assessed. Subsequently, the effect of mixing a protein-rich component and a carbohydrate-rich component was studied (i.e., fish/fruit and fish/cellulose, and meat/rice and meat/vegetable). All experiments were carried out in mesophilic batch assays using waste activated sludge (WAS) as main substrate, the same mixture ratio (70 % WAS +30 % FW on VS basis), and no pH control. Results showed that each FW component had a distinct effect on VFA yield and profile, with protein-rich components reaching the highest VFA yields; 502 and 442 mgCOD/gVS for WAS/Fish and WAS/Meat, respectively. A positive interaction on VFA yield was observed when mixing a protein-rich and a carbohydrate-rich component. This interaction was not proportional to the co-substrates proportion in the mixtures. On the other hand, the VFA profile was clearly driven by the components in the mixture, including both WAS and FW composition. Overall, these results indicate that predicting the VFA yield of WAS/FW co-fermentation is not just related to FW composition, but FW composition could be used to adjust the VFA profile to a certain extent.
研究了食物垃圾 (FW) 组成对共发酵性能的影响,以阐明是否可以通过调整 FW 组成来驱动发酵产率和产物谱,这对于生物炼制应用是相关的。首先,评估了单个 FW 成分(即水果、蔬菜、面食、大米、肉类、鱼类和纤维素)的影响。随后,研究了混合富含蛋白质的成分和富含碳水化合物的成分的效果(即鱼/果和鱼/纤维素,以及肉/米和肉/蔬菜)。所有实验均在中温批式实验中进行,使用废活性污泥 (WAS) 作为主要底物,相同的混合物比例(基于 VS 的 70%WAS+30%FW),并且不进行 pH 控制。结果表明,每个 FW 成分对 VFA 产率和产物谱都有明显的影响,富含蛋白质的成分达到最高的 VFA 产率;WAS/Fish 和 WAS/Meat 分别为 502 和 442mgCOD/gVS。当混合富含蛋白质的和富含碳水化合物的成分时,观察到 VFA 产率的正相互作用。这种相互作用与混合物中共底物的比例不成比例。另一方面,VFA 产物谱明显受混合物中成分的驱动,包括 WAS 和 FW 组成。总体而言,这些结果表明,预测 WAS/FW 共发酵的 VFA 产率不仅与 FW 组成有关,而且 FW 组成在一定程度上可以用来调整 VFA 产物谱。