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使用富集培养物提高高负荷连续消化器中产乙酸菌和产甲烷菌之间的厌氧共代谢相互作用。

Using enriched cultures for elevation of anaerobic syntrophic interactions between acetogens and methanogens in a high-load continuous digester.

机构信息

Biotechnology Group, Chemical Engineering Department, Faculty of Engineering, Tarbiat Modares University, P.O. Box 14115-143, Tehran, Iran.

出版信息

Bioresour Technol. 2011 Feb;102(4):3716-23. doi: 10.1016/j.biortech.2010.11.111. Epub 2010 Nov 28.

Abstract

Volatile fatty acids (VFAs) are key intermediates in anaerobic digestion. Enriched acetogenic and methanogenic cultures were used for syntrophic anaerobic digestion of VFAs in a high-load continuous reactor fed with acetic (HAc), propionic (HPr) and butyric (HBu) acids at maximum concentrations of 5, 3 and 4 g/L, respectively. Interactive effects of HPr, HBu and HAc were analyzed. Furthermore, hydraulic retention time (HRT) and methanogen to acetogen population ratio (M/A) were investigated as key microbiological and operating variables of VFA anaerobic degradations. Optimum conditions were found to be HPr=1125.0mg/L, HBu=1833.4 mg/L, HAc=1727.4 mg/L, HRT=21 h and M/A=2.5 (corresponding to maximum VFA removal and biogas production rate (BPR)). Results of verification experiments and predicted values from fitted correlations were in close agreement at 95% confidence interval. HRT and M/A had positive effects on VFA removal and BPR. M/A was the most important factor that affected BPR. All VFAs inhibited VFA removals.

摘要

挥发性脂肪酸(VFAs)是厌氧消化中的关键中间产物。在高负荷连续反应器中,使用富含产乙酸菌和产甲烷菌的培养物进行 VFAs 的共栖厌氧消化,进料中乙酸(HAc)、丙酸(HPr)和丁酸(HBu)的最大浓度分别为 5、3 和 4 g/L。分析了 HPr、HBu 和 HAc 的相互作用影响。此外,还研究了水力停留时间(HRT)和产甲烷菌与产乙酸菌的种群比例(M/A)作为 VFA 厌氧降解的关键微生物学和操作变量。发现最佳条件为 HPr=1125.0mg/L、HBu=1833.4 mg/L、HAc=1727.4 mg/L、HRT=21 h 和 M/A=2.5(对应于最大 VFA 去除率和沼气产生速率(BPR))。验证实验的结果与拟合相关系数的预测值在 95%置信区间内非常吻合。HRT 和 M/A 对 VFA 去除率和 BPR 有积极影响。M/A 是影响 BPR 的最重要因素。所有 VFAs 均抑制 VFA 去除率。

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