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推流生物反应器中水解的空间监测:对灵活操作的支持?

Spatial monitoring of hydrolysis in a plug-flow bioreactor: a support for flexible operation?

作者信息

Menzel Theresa, Neubauer Peter, Junne Stefan

机构信息

Chair of Bioprocess Engineering, Institute of Biotechnology, Technische Universität Berlin, Ackerstraße 76, ACK 24, 13355, Berlin, Germany.

Department of Chemistry and Bioscience, Aalborg University Esbjerg, Niels Bohrs Vej 8, 6700, Esbjerg, Denmark.

出版信息

Bioresour Bioprocess. 2024 Feb 14;11(1):23. doi: 10.1186/s40643-024-00740-0.

Abstract

Hydrolysis at changing hydraulic retention time, recirculation, bedding straw content in the feed, bioaugmentation and the impact of those changes on gradient formation in the liquid phase in plug-flow reactors (PFRs) was examined. The pH-value, conductivity and oxidation-reduction potential (ORP) were monitored at three spots along the PFRs to study potential correlations to process performance during a total process time of 123 weeks. The on-line monitoring showed good correlations to acidogenesis: namely, the pH and ORP to the acidification, to butyric (and lactic) acid concentration and to the acid yield. The ORP (measured at the inlet) showed the most stable correlation to acidogenesis under dynamic operation, while the conductivity (at the outlet) correlated to the acid concentration in dependence on the feedstock. Multiple measurement spots as used in this study allow to gain more information about acidogenic fermentation than a single spot, simplifying process control and automation attempts with recalcitrant feedstock.

摘要

研究了在推流式反应器(PFR)中,改变水力停留时间、循环、进料中秸秆含量、生物强化时的水解作用,以及这些变化对液相中梯度形成的影响。在PFR的三个位置监测pH值、电导率和氧化还原电位(ORP),以研究在123周的总处理时间内与工艺性能的潜在相关性。在线监测显示与产酸过程具有良好的相关性:即pH值和ORP与酸化、丁酸(和乳酸)浓度以及酸产量的相关性。在动态运行条件下,ORP(在入口处测量)与产酸过程的相关性最为稳定,而电导率(在出口处)则根据原料与酸浓度相关。本研究中使用的多个测量点比单个测量点能获得更多关于产酸发酵的信息,从而简化了对难降解原料的过程控制和自动化尝试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08f5/10992403/583dded8fd92/40643_2024_740_Fig1_HTML.jpg

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