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Biotic and abiotic bisphenol-A removal from wastewater by activated sludge: effects of temperature, biomass, and bisphenol-A concentrations

机译:活性污泥从废水中去除生物和非生物双酚A:温度,生物量和双酚A浓度的影响

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摘要

In this study, bisphenol-A (BPA) removal from synthetic wastewaters using a laboratory-scale activated sludge system was achieved. Activated (biotic) sludge was used for BPA elimination, whereas inactivated (abiotic) sludge was used during the adsorption study. In each step, six different BPA concentrations (5, 10, 20, 30, 40, and 50 mg L-1) were tested, and temperatures were set to 10, 20, and 30 degrees C in the shakers. Four different activated sludge concentrations (1,000, 2,000, 3,000, and 4,000 mgTSS L-1) were applied in the biotic study, and only 2,000 mgTSS L-1 was used in the abiotic study. After settlement of the sludge in the shakers, supernatants and control groups were filtered and analyzed for BPA using high performance liquid chromatography. In the biotic study, BPA and chemical oxygen demand (COD) concentrations were reduced at 100% and 99% levels, respectively. However, the BPA concentrations during the abiotic study changed slightly at varying temperatures, whereas there was no change of BPA concentration observed in the control groups. Results indicate that the main factor of BPA removal in an activated sludge system is biological. Kinetic studies were also conducted. BPA removal was best fit to zero-and first-order reaction kinetics, and the reaction rate constants are provided in this paper.
机译:在这项研究中,实现了使用实验室规模的活性污泥系统从合成废水中去除双酚A(BPA)。活性(生物)污泥用于消除BPA,而吸附(吸附)过程中使用灭活(非生物)污泥。在每个步骤中,测试六种不同的BPA浓度(5、10、20、30、40和50 mg L-1),并在振荡器中将温度设置为10、20和30摄氏度。在生物研究中应用了四种不同的活性污泥浓度(1,000、2,000、3,000和4,000 mgTSS L-1),在非生物研究中仅使用了2,000 mgTSS L-1。将污泥沉淀在摇床中后,将上清液和对照组过滤并使用高效液相色谱法分析BPA。在生物研究中,BPA和化学需氧量(COD)浓度分别降低了100%和99%。然而,在非生物研究期间,BPA浓度在不同温度下略有变化,而对照组中未观察到BPA浓度的变化。结果表明,活性污泥系统中去除BPA的主要因素是生物学的。还进行了动力学研究。 BPA去除最适合零级和一级反应动力学,并且本文提供了反应速率常数。

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