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利用混合微生物培养物降解对羟基苯甲酸

Degradation of para-hydroxybenzoic acid by means of mixed microbial cultures.

作者信息

Lallai Antonio, Mura Giampaolo, Palmas Simonetta, Polcaro Anna Maria, Baraccani Luca

机构信息

Dipartimento di Ingegneria Chimica e Materiali, Unità di Ricerca del Consorzio Interuniversitario Nazionale La Chimica per l'Ambiente, Università di Cagliari, Piazza d'Armi, I-09123 Cagliari, Italy.

出版信息

Environ Sci Pollut Res Int. 2003;10(4):221-4. doi: 10.1065/espr2001.12.104.3.

Abstract

Olive mill wastewater contains some phenolic compounds that cause antibacterial activity of a kind that prevents biological treatment without previous dilution. Among these phenolic compounds, p-hydroxybenzoic acid (PHB) is considered to be one of the most representative. This work examines the biodegradation of PHB by aerobic microbial mixed cultures previously acclimatized to glucose, which was used as an easily biodegradable model compound. Microbial growth runs were carried out in a batch reactor in the PHB concentration range of 200-1000 mg/L. In all the runs the PHB proved to be completely degradable. The specific growth rates obtained were in the range of 0.16-0.35 l/h. Experimental runs showed that the functional relationship between the specific growth rate and PHB concentration was that proposed by Monod. The kinetic constants of the Monod equation (mu(max) and K(S)) and biomass yield coefficient (Y) were determined experimentally. With the parameter values thus obtained, a mathematical model that also takes account of the duration of the lag phase was employed to describe both the microbial growth and the consumption of PHB. The concentration values of the model fit well with the data obtained experimentally.

摘要

橄榄榨油废水含有一些酚类化合物,这些化合物会产生一种抗菌活性,在未经预先稀释的情况下会阻碍生物处理。在这些酚类化合物中,对羟基苯甲酸(PHB)被认为是最具代表性的一种。这项工作研究了先前适应葡萄糖的好氧微生物混合培养物对PHB的生物降解,葡萄糖被用作一种易于生物降解的模型化合物。微生物生长实验在间歇式反应器中进行,PHB浓度范围为200 - 1000 mg/L。在所有实验中,PHB被证明是完全可降解的。获得的比生长速率在0.16 - 0.35 l/h范围内。实验表明,比生长速率与PHB浓度之间的函数关系符合莫诺德提出的关系。通过实验确定了莫诺德方程的动力学常数(μ(max) 和K(S))以及生物量产率系数(Y)。利用由此获得的参数值,采用一个还考虑了延迟期持续时间的数学模型来描述微生物生长和PHB的消耗。该模型的浓度值与实验获得的数据拟合良好。

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