Bierer Benedikt, Kress Philipp, Nägele Hans-Joachim, Lemmer Andreas, Palzer Stefan
Laboratory for Gas Sensors Department of Microsystems Engineering University of Freiburg Freiburg Germany.
Fraunhofer Institute for Physical Measurement Techniques (IPM) Freiburg Germany.
Eng Life Sci. 2019 Aug 20;19(10):700-710. doi: 10.1002/elsc.201900046. eCollection 2019 Oct.
In future energy systems based on renewable energies, biogas plants can make a significant contribution to stabilizing the electricity grids. However, this requires load-flexible and demand-oriented electricity production by means of flexible feed management. However, these flexible feeding strategies using greatly oscillating, temporally varying high mass loads may lead to critical process failures of the anaerobic digestion process. Currently there is no online, high resolution gas quality measurement technique to detect and prevent biological process failures available. In this contribution, we present a miniaturized, low-cost biogas quality measurement system providing data with high precision and high temporal resolution to overcome this technology gap. To highlight the capabilities of the system we have installed it using a bypass to the main biogas duct after hydrogen sulfide removal at a full-scale research biogas plant. During a three-month field trial, the effect of flexible feeding on the biogas quality has been monitored. The results demonstrate long-term stability of the sensor solution and reveal the effects of changing feeding frequency and composition on gas quantity and quality, which cannot be detected with commercially available state-of-the-art sensing systems.
在基于可再生能源的未来能源系统中,沼气厂可为稳定电网做出重大贡献。然而,这需要通过灵活的进料管理实现负荷灵活且以需求为导向的电力生产。然而,这些使用大幅振荡、随时间变化的高负荷的灵活进料策略可能导致厌氧消化过程出现关键的工艺故障。目前,尚无用于检测和预防生物过程故障的在线、高分辨率气体质量测量技术。在本论文中,我们展示了一种小型化、低成本的沼气质量测量系统,该系统能提供高精度和高时间分辨率的数据,以克服这一技术差距。为突出该系统的性能,我们在一座全尺寸研究型沼气厂去除硫化氢后,通过旁路将其安装到主沼气管道上。在为期三个月的现场试验中,监测了灵活进料对沼气质量的影响。结果证明了传感器解决方案的长期稳定性,并揭示了进料频率和成分变化对气体数量和质量的影响,而这些影响是现有商业先进传感系统无法检测到的。