Institute of Waste Treatment and Reclamation, Tongji University, Shanghai 200092, People's Republic of China.
Institute of Waste Treatment and Reclamation, Tongji University, Shanghai 200092, People's Republic of China; Shanghai Institute of Pollution Control and Ecological Security, Shanghai 200092, People's Republic of China.
Biotechnol Adv. 2023 Oct;67:108204. doi: 10.1016/j.biotechadv.2023.108204. Epub 2023 Jun 24.
The wide application of anaerobic digestion (AD) technology is limited by process fluctuations. Thus, process monitoring based on screening state parameters as early warning indicators (EWI) is a top priority for AD facilities. However, predicting anaerobic digester stability based on such indicators is difficult, and their threshold values are uncertain, case-specific, and sometimes produce conflicting results. Thus, new EWI should be proposed to integrate microbial and metabolic information. These microbial volatile organic compounds (mVOCs) including alkanes, alkenes, alkynes, aromatic compounds are produced by microorganisms (bacteria, archaea and fungi), which might serve as a promising diagnostic tool for environmental monitoring. Moreover, mVOCs diffuse in both gas and liquid phases and are considered the language of intra kingdom microbial interactions. Herein, we highlight the potential of mVOCs as EWI for AD process instability, including discussions regarding characteristics and sources of mVOCs as well as sampling and determination methods. Furthermore, existing challenges must be addressed, before mVOCs profiling can be used as an early warning system for diagnosing AD process instability, such as mVOCs sampling, analysis and identification. Finally, we discuss the potential biotechnology applications of mVOCs and approaches to overcome the challenges regarding their application.
厌氧消化(AD)技术的广泛应用受到工艺波动的限制。因此,基于筛选状态参数作为预警指标(EWI)的过程监测是 AD 设施的首要任务。然而,基于这些指标预测厌氧消化器的稳定性是困难的,其阈值是不确定的、特定于案例的,并且有时会产生相互矛盾的结果。因此,应该提出新的 EWI 来整合微生物和代谢信息。这些微生物挥发性有机化合物(mVOCs)包括烷烃、烯烃、炔烃、芳香族化合物,是由微生物(细菌、古菌和真菌)产生的,可能是环境监测的一种很有前途的诊断工具。此外,mVOCs 在气相和液相中扩散,被认为是王国内微生物相互作用的语言。在此,我们强调了 mVOCs 作为 AD 过程不稳定的 EWI 的潜力,包括讨论 mVOCs 的特征和来源以及采样和测定方法。此外,在将 mVOCs 分析作为诊断 AD 过程不稳定的预警系统之前,必须解决 mVOCs 分析方面的现有挑战,如 mVOCs 采样、分析和鉴定。最后,我们讨论了 mVOCs 的潜在生物技术应用以及克服其应用挑战的方法。