Determination the biochemical kinetics of natural and synthetic estrogens in moving bed Bioreactor

Q3 Medicine
Z. Yavari, F. Mohammadi, M. Amin
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引用次数: 0

Abstract

Aim: Estrogenic compounds as a group of endocrine disruptive compounds can interfere with endocrine system beings. In the present work, an attempt has been made, to characterize the kinetic coefficients of natural and synthetic estrogens, in a pilot-scale moving bed biofilm bioreactor (MBBR). Materials and Methods: The substrate removal rates were investigated at different organic loading rates, and hydraulic retention times. By applying some biokinetic models including first order, second order, Stover–Kincannon, and the Monod equation, the kinetic constants (m, Ks, k, Y, and Kd) were determined. Results: Estrogen-specific removal rate was between 0.22 and 1.45 μg. g VSS-1.d-1 for natural and synthetic hormones. The experimental data showed that the Stover–Kincannon model and second-order model were the fit models and have high correlation coefficients more than 99%. Conclusion: These findings indicated that theses mathematical models could be promising models for effectively predicting kinetic parameters for performance of MBBR reactors.
移动床生物反应器中天然和合成雌激素的生化动力学测定
目的:雌激素类化合物是一类内分泌干扰类化合物,对人体内分泌系统有干扰作用。本文在中试移动床生物膜反应器(MBBR)中,对天然雌激素和合成雌激素的动力学系数进行了表征。材料与方法:在不同的有机负载率和水力滞留时间下,研究了基质的去除率。采用一阶、二阶、Stover-Kincannon和Monod方程等生物动力学模型,确定了其动力学常数m、Ks、k、Y和Kd。结果:雌激素特异性去除率在0.22 ~ 1.45 μg之间。g VSS-1。D-1用于天然和合成激素。实验数据表明,Stover-Kincannon模型和二阶模型均为拟合模型,相关系数大于99%。结论:该数学模型可作为MBBR反应器性能动力学参数的有效预测模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.00
自引率
0.00%
发文量
3
审稿时长
43 weeks
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