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首页> 外文期刊>Oil Shale >BIODEGRAD ABILITY OF PHENOL, RESORCINOL AND 5-METHYLRESORCINOL AS SINGLE AND MIXED SUBSTRATES BY ACTIVATED SLUDGE
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BIODEGRAD ABILITY OF PHENOL, RESORCINOL AND 5-METHYLRESORCINOL AS SINGLE AND MIXED SUBSTRATES BY ACTIVATED SLUDGE

机译:活性污泥对苯酚,间苯二酚和5-甲基间苯二酚作为单一和混合基质的生物降解能力

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摘要

The aim of this study was to investigate aerobic biodegradability of phenol, resorcinol and 5-methylresorcinol and their different two-component mixtures using activated sludge sampled from the Kohtla-Jdrve wastewater treatment plant. The degradation behaviour of phenolic compounds was investigated by respirometry. Non-linear regression analysis was used for determination of the kinetic parameters such as the maximum rate of oxygen uptake ( V_(O2,max)), the maximum rate of substrate bio-oxidation (V_(max)) and the half-saturation coefficient (K$). Various kinetic models were tested to obtain the best curve fit. It was shown that the activated sludge degraded resorcinol and 5-methylresorcinol more slowly than phenol. Among the studied substrates phenol had the highest values of V_(O2,max), V_(max) as well as the ratio of V_(O2,max)/K_S. Activated sludge had the highest affinity to phenol with the lowest K_S value. Among all studied bi-substrate systems the highest V_(O2,max) values were found for phenol (0.1 mM) - 5-methylresorcinol. As the kinetic parameters and short-term oxygen demands are functions of the compound undergoing biodegradation and the composition of the microbial community performing the degradation, therefore the results of this study have importance in explanation of effectiveness of wastewater treatment process and of the influence of polluting compounds on it.
机译:这项研究的目的是使用从Kohtla-Jdrve废水处理厂取样的活性污泥,研究苯酚,间苯二酚和5-甲基间苯二酚及其不同的两组分混合物的好氧生物降解能力。通过呼吸测定法研究了酚类化合物的降解行为。非线性回归分析用于确定动力学参数,例如最大摄氧速率(V_(O2,max)),底物生物氧化最大速率(V_(max))和半饱和系数(K $)。测试了各种动力学模型以获得最佳曲线拟合。结果表明,活性污泥降解间苯二酚和5-甲基间苯二酚的速度比苯酚慢。在研究的底物中,苯酚的V_(O2,max),V_(max)以及V_(O2,max)/ K_S之比最高。活性污泥对苯酚的亲和力最高,K_S值最低。在所有研究的双底物系统中,发现苯酚(0.1 mM)-5-甲基间苯二酚的最高V_(O2,max)值。由于动力学参数和短期需氧量是经过生物降解的化合物的功能以及进行降解的微生物群落的组成,因此,本研究的结果对于解释废水处理过程的有效性以及污染的影响具有重要意义。化合物。

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