Department of Chemical Engineering and Food Technology, Faculty of Science, University of Cádiz - International Campus of Excellence (ceiA3), P.O. Box No 40, 11510, Puerto Real, Cádiz, Spain.
Department of Chemical Engineering and Food Technology, Faculty of Science, University of Cádiz - International Campus of Excellence (ceiA3), P.O. Box No 40, 11510, Puerto Real, Cádiz, Spain.
Chemosphere. 2022 Apr;293:133484. doi: 10.1016/j.chemosphere.2021.133484. Epub 2022 Jan 3.
This work consists of a long-term (621 days) experimental study about biogas production from sun dried sugar beet pulp and cow manure. Thermophilic (55 °C) anaerobic co-digestion was performed in semi-continuous reactors, testing ten hydraulic retention times (30-3 days) (HRTs) and organic loading rates (2-24 gVS/L∙d) (OLRs). Results showed that the best global system performance (regarding stability, biogas production, and organic matter removal) was achieved at an HRT as short as 5 days (OLR of 12.47 gVS/L∙d) with a biogas yield of 315 mL/gVS. The gradual OLR increase allowed system control and time-appropriate intervention, avoiding irreversible process disturbances and maintaining admissible acidity/alkalinity ratios (<0.8) for HRTs ranging from 30 to 4 days. The accumulation of acetic acid was the main cause of the process disturbance observed at short HRTs. It was deduced that for the HRT of 3 days, the methane productivity was mainly owing to the hydrogen-utilizing methanogens pathway. This research clearly shows how an adequate combination of agro-industrial wastes and livestock manure could be processed by anaerobic co-digestion in short HRTs with great efficiency and stability and deepens in the understanding of the start-up, stability and optimization of the co-digestion.
这项工作是一项为期 621 天的沼气生产实验研究,涉及晒干的糖甜菜渣和牛粪。采用高温(55°C)厌氧共消化工艺,在半连续式反应器中进行了十个水力停留时间(30-3 天)(HRT)和有机负荷率(2-24 gVS/L·d)(OLR)的测试。结果表明,在 HRT 仅为 5 天(OLR 为 12.47 gVS/L·d)、沼气产率为 315 mL/gVS 的情况下,可获得最佳的整体系统性能(稳定性、沼气产量和有机物去除)。逐渐增加 OLR 允许系统控制和适时干预,避免了不可逆的工艺干扰,并保持了可接受的酸度/碱度比(<0.8),HRT 范围从 30 天到 4 天。乙酸的积累是在短 HRT 下观察到的工艺干扰的主要原因。推断在 HRT 为 3 天时,甲烷生产力主要归因于利用氢的产甲烷菌途径。这项研究清楚地表明,通过适当组合农业工业废物和牲畜粪便,可以在短 HRT 下进行高效和稳定的厌氧共消化处理,并深入了解共消化的启动、稳定性和优化。