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半连续生物反应器中啤酒糟的厌氧消化:酚类降解产物的抑制作用。

Anaerobic digestion of brewery spent grain in a semi-continuous bioreactor: inhibition by phenolic degradation products.

作者信息

Sežun Mija, Grilc Viktor, Zupančič Gregor D, Marinšek-Logar Romana

出版信息

Acta Chim Slov. 2011 Mar;58(1):158-66.

Abstract

In this study anaerobic digestion of selected lignocellulosic substrate, namely brewery spent grain (BSG), was studied. In order to facilitate anaerobic digestion several types of pretreatment methods were tested such as: mechanical, chemical (alkali and acid) and thermo-chemical. The anaerobic digestion experiments were carried out in a semi-continuous stirred bioreactors with the organic loading rates between 2.9 and 3.9 kgCOD m-3 d-1 (1.9 and 2.5 kgVSS m-3 d-1 respectively) and corresponding hydraulic retention times of 33-39 days. Biogas production and composition, pH, COD, TSS and VSS, short chain fatty acids and phenolic compounds were measured. A significant inhibition of biogas production occurred, depending on the type of substrate pretreatment. There are indications that p-cresol is responsible for process inhibition when its concentration in the reaction mixture exceeds critical value between 115 and 240 mg L-1. Anaerobic digestion of chemically pretreated BSG (acid and alkali) and untreated-raw BSG was inhibited between the days 56 and 63 of the experiment, followed by thermo-chemically pretreated BSG on day 112 and mechanically pretreated BSG on day 126. Analyses of the substrates showed no phenolic compounds either in raw-untreated BSG or pretreated substrates, therefore the recorded p-cresol is an intermediate degradation product, responsible for process inhibition.

摘要

在本研究中,对选定的木质纤维素底物——啤酒糟(BSG)进行了厌氧消化研究。为促进厌氧消化,测试了几种预处理方法,如机械法、化学法(碱法和酸法)以及热化学法。厌氧消化实验在半连续搅拌生物反应器中进行,有机负荷率在2.9至3.9 kgCOD m-3 d-1之间(分别相当于1.9至2.5 kgVSS m-3 d-1),相应的水力停留时间为33 - 39天。测量了沼气产量和成分、pH值、COD、TSS和VSS、短链脂肪酸以及酚类化合物。根据底物预处理类型的不同,沼气产量受到显著抑制。有迹象表明,当反应混合物中对甲酚的浓度超过115至240 mg L-1的临界值时,对甲酚是导致过程抑制的原因。在实验的第56天至63天之间,化学预处理(酸法和碱法)的BSG以及未处理的生BSG的厌氧消化受到抑制,随后在第112天热化学预处理的BSG受到抑制,在第126天机械预处理的BSG受到抑制。对底物的分析表明,未处理的生BSG或预处理底物中均未发现酚类化合物,因此记录到的对甲酚是一种中间降解产物,是导致过程抑制的原因。

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