Faculty of Engineering and the Environment, University of Southampton, Southampton SO17 1BJ, UK; Department of Agricultural Industry Technology, Faculty of Agricultural Technology, University of Brawijaya, Malang 64145, Indonesia.
Faculty of Engineering and the Environment, University of Southampton, Southampton SO17 1BJ, UK.
Bioresour Technol. 2014;152:202-11. doi: 10.1016/j.biortech.2013.11.010. Epub 2013 Nov 14.
Digestion of sugar beet pulp was assessed in relation to biogas and methane production, foaming potential, and digestate dewaterability. Four 4-litre working volume digesters were operated mesophilically (37±0.5 °C) and four thermophilically (55±0.5 °C) over three hydraulic retention times. Digesters were operated in duplicate at organic loading rates (OLR) of 4 and 5 g volatile solids l(-1) day(-1) without water addition. Thermophilic digestion gave higher biogas and methane productivity than mesophilic and was able to operate at the higher OLR, where mesophilic digestion showed signs of instability. Digestate dewaterability was assessed using capillary suction time and frozen image centrifugation. The occurrence of, or potential for, stable foam formation was assessed using a foaming potential test. Thermophilic operation allowed higher loadings to be applied without loss of performance, and gave a digestate with superior dewatering characteristics and very little foaming potential.
评估了糖用甜菜浆的消化性能与沼气和甲烷生成、起泡潜力以及消化残渣脱水能力的关系。四个 4 升工作体积的消化器在中温(37±0.5°C)和高温(55±0.5°C)条件下分别运行了三个水力停留时间。在不加水的情况下,以 4 和 5 g 挥发性固体 l(-1) day(-1) 的有机负荷率(OLR)在两个消化器中重复运行。与中温相比,高温消化产生了更高的沼气和甲烷生产力,并且能够在更高的 OLR 下运行,而中温消化则显示出不稳定的迹象。使用毛细抽吸时间和冷冻图像离心评估了消化残渣的脱水能力。使用起泡潜力测试评估了稳定泡沫形成的发生或潜在可能性。高温运行允许在不降低性能的情况下施加更高的负荷,并且产生了具有优异脱水特性和很少起泡潜力的消化残渣。